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@@ -23,10 +23,12 @@ jobs:
|
|||||||
with:
|
with:
|
||||||
name: firmware-binary
|
name: firmware-binary
|
||||||
path: flix/build
|
path: flix/build
|
||||||
- name: Build firmware for ESP32-S3
|
|
||||||
run: make BOARD=esp32:esp32:esp32s3
|
|
||||||
- name: Build firmware for ESP32-C3
|
- name: Build firmware for ESP32-C3
|
||||||
run: make BOARD=esp32:esp32:esp32c3
|
run: make BOARD=esp32:esp32:esp32c3
|
||||||
|
- name: Build firmware for ESP32-S3
|
||||||
|
run: make BOARD=esp32:esp32:esp32s3
|
||||||
|
- name: Build espnow-proxy
|
||||||
|
run: arduino-cli compile --fqbn esp32:esp32:esp32 tools/espnow-proxy
|
||||||
- name: Check c_cpp_properties.json
|
- name: Check c_cpp_properties.json
|
||||||
run: tools/check_c_cpp_properties.py
|
run: tools/check_c_cpp_properties.py
|
||||||
|
|
||||||
|
|||||||
@@ -4,9 +4,10 @@ build/
|
|||||||
tools/log/
|
tools/log/
|
||||||
tools/dist/
|
tools/dist/
|
||||||
*.egg-info/
|
*.egg-info/
|
||||||
.dependencies
|
.core
|
||||||
|
.libs
|
||||||
.vscode/*
|
.vscode/*
|
||||||
!.vscode/settings.json
|
!.vscode/settings.default.json
|
||||||
!.vscode/c_cpp_properties.json
|
!.vscode/c_cpp_properties.json
|
||||||
!.vscode/tasks.json
|
!.vscode/tasks.json
|
||||||
!.vscode/launch.json
|
!.vscode/launch.json
|
||||||
|
|||||||
@@ -6,18 +6,18 @@
|
|||||||
"${workspaceFolder}/flix",
|
"${workspaceFolder}/flix",
|
||||||
"${workspaceFolder}/gazebo",
|
"${workspaceFolder}/gazebo",
|
||||||
"${workspaceFolder}/tools/**",
|
"${workspaceFolder}/tools/**",
|
||||||
"~/.arduino15/packages/esp32/hardware/esp32/3.3.6/cores/esp32",
|
"~/.arduino15/packages/esp32/hardware/esp32/3.3.10/cores/esp32",
|
||||||
"~/.arduino15/packages/esp32/hardware/esp32/3.3.6/libraries/**",
|
"~/.arduino15/packages/esp32/hardware/esp32/3.3.10/libraries/**",
|
||||||
"~/.arduino15/packages/esp32/hardware/esp32/3.3.6/variants/d1_mini32",
|
"~/.arduino15/packages/esp32/hardware/esp32/3.3.10/variants/d1_mini32",
|
||||||
"~/.arduino15/packages/esp32/tools/esp32-libs/3.3.6/include/**",
|
"~/.arduino15/packages/esp32/tools/esp32-libs/3.3.10/include/**",
|
||||||
"~/Arduino/libraries/**",
|
"~/Arduino/libraries/**",
|
||||||
"/usr/include/gazebo-11/",
|
"/usr/include/gazebo-11/",
|
||||||
"/usr/include/ignition/math6/"
|
"/usr/include/ignition/math6/"
|
||||||
],
|
],
|
||||||
"forcedInclude": [
|
"forcedInclude": [
|
||||||
"${workspaceFolder}/.vscode/intellisense.h",
|
"${workspaceFolder}/.vscode/intellisense.h",
|
||||||
"~/.arduino15/packages/esp32/hardware/esp32/3.3.6/cores/esp32/Arduino.h",
|
"~/.arduino15/packages/esp32/hardware/esp32/3.3.10/cores/esp32/Arduino.h",
|
||||||
"~/.arduino15/packages/esp32/hardware/esp32/3.3.6/variants/d1_mini32/pins_arduino.h",
|
"~/.arduino15/packages/esp32/hardware/esp32/3.3.10/variants/d1_mini32/pins_arduino.h",
|
||||||
"${workspaceFolder}/flix/cli.ino",
|
"${workspaceFolder}/flix/cli.ino",
|
||||||
"${workspaceFolder}/flix/control.ino",
|
"${workspaceFolder}/flix/control.ino",
|
||||||
"${workspaceFolder}/flix/estimate.ino",
|
"${workspaceFolder}/flix/estimate.ino",
|
||||||
@@ -33,7 +33,7 @@
|
|||||||
"${workspaceFolder}/flix/parameters.ino",
|
"${workspaceFolder}/flix/parameters.ino",
|
||||||
"${workspaceFolder}/flix/safety.ino"
|
"${workspaceFolder}/flix/safety.ino"
|
||||||
],
|
],
|
||||||
"compilerPath": "~/.arduino15/packages/esp32/tools/esp-x32/2511/bin/xtensa-esp32-elf-g++",
|
"compilerPath": "~/.arduino15/packages/esp32/tools/esp-x32/2601/bin/xtensa-esp32-elf-g++",
|
||||||
"cStandard": "c11",
|
"cStandard": "c11",
|
||||||
"cppStandard": "c++17",
|
"cppStandard": "c++17",
|
||||||
"defines": [
|
"defines": [
|
||||||
@@ -53,18 +53,18 @@
|
|||||||
"name": "Mac",
|
"name": "Mac",
|
||||||
"includePath": [
|
"includePath": [
|
||||||
"${workspaceFolder}/flix",
|
"${workspaceFolder}/flix",
|
||||||
"~/Library/Arduino15/packages/esp32/hardware/esp32/3.3.6/cores/esp32",
|
"~/Library/Arduino15/packages/esp32/hardware/esp32/3.3.10/cores/esp32",
|
||||||
"~/Library/Arduino15/packages/esp32/hardware/esp32/3.3.6/libraries/**",
|
"~/Library/Arduino15/packages/esp32/hardware/esp32/3.3.10/libraries/**",
|
||||||
"~/Library/Arduino15/packages/esp32/hardware/esp32/3.3.6/variants/d1_mini32",
|
"~/Library/Arduino15/packages/esp32/hardware/esp32/3.3.10/variants/d1_mini32",
|
||||||
"~/Library/Arduino15/packages/esp32/tools/esp32-libs/3.3.6/include/**",
|
"~/Library/Arduino15/packages/esp32/tools/esp32-libs/3.3.10/include/**",
|
||||||
"~/Documents/Arduino/libraries/**",
|
"~/Documents/Arduino/libraries/**",
|
||||||
"/opt/homebrew/include/gazebo-11/",
|
"/opt/homebrew/include/gazebo-11/",
|
||||||
"/opt/homebrew/include/ignition/math6/"
|
"/opt/homebrew/include/ignition/math6/"
|
||||||
],
|
],
|
||||||
"forcedInclude": [
|
"forcedInclude": [
|
||||||
"${workspaceFolder}/.vscode/intellisense.h",
|
"${workspaceFolder}/.vscode/intellisense.h",
|
||||||
"~/Library/Arduino15/packages/esp32/hardware/esp32/3.3.6/cores/esp32/Arduino.h",
|
"~/Library/Arduino15/packages/esp32/hardware/esp32/3.3.10/cores/esp32/Arduino.h",
|
||||||
"~/Library/Arduino15/packages/esp32/hardware/esp32/3.3.6/variants/d1_mini32/pins_arduino.h",
|
"~/Library/Arduino15/packages/esp32/hardware/esp32/3.3.10/variants/d1_mini32/pins_arduino.h",
|
||||||
"${workspaceFolder}/flix/flix.ino",
|
"${workspaceFolder}/flix/flix.ino",
|
||||||
"${workspaceFolder}/flix/cli.ino",
|
"${workspaceFolder}/flix/cli.ino",
|
||||||
"${workspaceFolder}/flix/control.ino",
|
"${workspaceFolder}/flix/control.ino",
|
||||||
@@ -80,7 +80,7 @@
|
|||||||
"${workspaceFolder}/flix/parameters.ino",
|
"${workspaceFolder}/flix/parameters.ino",
|
||||||
"${workspaceFolder}/flix/safety.ino"
|
"${workspaceFolder}/flix/safety.ino"
|
||||||
],
|
],
|
||||||
"compilerPath": "~/Library/Arduino15/packages/esp32/tools/esp-x32/2511/bin/xtensa-esp32-elf-g++",
|
"compilerPath": "~/Library/Arduino15/packages/esp32/tools/esp-x32/2601/bin/xtensa-esp32-elf-g++",
|
||||||
"cStandard": "c11",
|
"cStandard": "c11",
|
||||||
"cppStandard": "c++17",
|
"cppStandard": "c++17",
|
||||||
"defines": [
|
"defines": [
|
||||||
@@ -103,16 +103,16 @@
|
|||||||
"${workspaceFolder}/flix",
|
"${workspaceFolder}/flix",
|
||||||
"${workspaceFolder}/gazebo",
|
"${workspaceFolder}/gazebo",
|
||||||
"${workspaceFolder}/tools/**",
|
"${workspaceFolder}/tools/**",
|
||||||
"~/AppData/Local/Arduino15/packages/esp32/hardware/esp32/3.3.6/cores/esp32",
|
"~/AppData/Local/Arduino15/packages/esp32/hardware/esp32/3.3.10/cores/esp32",
|
||||||
"~/AppData/Local/Arduino15/packages/esp32/hardware/esp32/3.3.6/libraries/**",
|
"~/AppData/Local/Arduino15/packages/esp32/hardware/esp32/3.3.10/libraries/**",
|
||||||
"~/AppData/Local/Arduino15/packages/esp32/hardware/esp32/3.3.6/variants/d1_mini32",
|
"~/AppData/Local/Arduino15/packages/esp32/hardware/esp32/3.3.10/variants/d1_mini32",
|
||||||
"~/AppData/Local/Arduino15/packages/esp32/tools/esp32-libs/3.3.6/include/**",
|
"~/AppData/Local/Arduino15/packages/esp32/tools/esp32-libs/3.3.10/include/**",
|
||||||
"~/Documents/Arduino/libraries/**"
|
"~/Documents/Arduino/libraries/**"
|
||||||
],
|
],
|
||||||
"forcedInclude": [
|
"forcedInclude": [
|
||||||
"${workspaceFolder}/.vscode/intellisense.h",
|
"${workspaceFolder}/.vscode/intellisense.h",
|
||||||
"~/AppData/Local/Arduino15/packages/esp32/hardware/esp32/3.3.6/cores/esp32/Arduino.h",
|
"~/AppData/Local/Arduino15/packages/esp32/hardware/esp32/3.3.10/cores/esp32/Arduino.h",
|
||||||
"~/AppData/Local/Arduino15/packages/esp32/hardware/esp32/3.3.6/variants/d1_mini32/pins_arduino.h",
|
"~/AppData/Local/Arduino15/packages/esp32/hardware/esp32/3.3.10/variants/d1_mini32/pins_arduino.h",
|
||||||
"${workspaceFolder}/flix/cli.ino",
|
"${workspaceFolder}/flix/cli.ino",
|
||||||
"${workspaceFolder}/flix/control.ino",
|
"${workspaceFolder}/flix/control.ino",
|
||||||
"${workspaceFolder}/flix/estimate.ino",
|
"${workspaceFolder}/flix/estimate.ino",
|
||||||
@@ -128,7 +128,7 @@
|
|||||||
"${workspaceFolder}/flix/parameters.ino",
|
"${workspaceFolder}/flix/parameters.ino",
|
||||||
"${workspaceFolder}/flix/safety.ino"
|
"${workspaceFolder}/flix/safety.ino"
|
||||||
],
|
],
|
||||||
"compilerPath": "~/AppData/Local/Arduino15/packages/esp32/tools/esp-x32/2511/bin/xtensa-esp32-elf-g++.exe",
|
"compilerPath": "~/AppData/Local/Arduino15/packages/esp32/tools/esp-x32/2601/bin/xtensa-esp32-elf-g++.exe",
|
||||||
"cStandard": "c11",
|
"cStandard": "c11",
|
||||||
"cppStandard": "c++17",
|
"cppStandard": "c++17",
|
||||||
"defines": [
|
"defines": [
|
||||||
|
|||||||
@@ -1,6 +1,7 @@
|
|||||||
{
|
{
|
||||||
// See https://go.microsoft.com/fwlink/?LinkId=827846 to learn about workspace recommendations.
|
// See https://go.microsoft.com/fwlink/?LinkId=827846 to learn about workspace recommendations.
|
||||||
"recommendations": [
|
"recommendations": [
|
||||||
|
"dangmai.workspace-default-settings",
|
||||||
"ms-vscode.cpptools",
|
"ms-vscode.cpptools",
|
||||||
"ms-vscode.cmake-tools",
|
"ms-vscode.cmake-tools",
|
||||||
"ms-python.python"
|
"ms-python.python"
|
||||||
|
|||||||
@@ -1,28 +1,40 @@
|
|||||||
BOARD = esp32:esp32:d1_mini32
|
BOARD = esp32:esp32:d1_mini32
|
||||||
PORT := $(strip $(wildcard /dev/serial/by-id/usb-Silicon_Labs_CP21* /dev/serial/by-id/usb-1a86_USB_Single_Serial_* /dev/cu.usbserial-* /dev/cu.usbmodem*))
|
PORT := $(strip $(wildcard /dev/serial/by-id/usb-Silicon_Labs_CP21* /dev/serial/by-id/usb-1a86_USB_Single_Serial_* /dev/cu.usbserial-* /dev/cu.usbmodem*))
|
||||||
|
|
||||||
build: .dependencies
|
export ARDUINO_NETWORK_CONNECTION_TIMEOUT := 1h
|
||||||
arduino-cli compile --fqbn $(BOARD) flix
|
|
||||||
|
build: .core .libs
|
||||||
|
arduino-cli compile --fqbn $(BOARD) --build-property "build.core_debug_level=1" flix
|
||||||
|
|
||||||
upload: build
|
upload: build
|
||||||
arduino-cli upload --fqbn $(BOARD) -p "$(PORT)" flix
|
arduino-cli upload --fqbn $(BOARD) -p "$(PORT)" flix
|
||||||
|
|
||||||
|
erase:
|
||||||
|
arduino-cli burn-bootloader --fqbn $(BOARD) -p "$(PORT)" -P esptool
|
||||||
|
|
||||||
monitor:
|
monitor:
|
||||||
arduino-cli monitor -p "$(PORT)" -c baudrate=115200
|
arduino-cli monitor -p "$(PORT)" -c baudrate=115200
|
||||||
|
|
||||||
dependencies .dependencies:
|
core .core:
|
||||||
arduino-cli core update-index --config-file arduino-cli.yaml
|
arduino-cli core update-index --additional-urls https://espressif.github.io/arduino-esp32/package_esp32_index.json
|
||||||
arduino-cli core install esp32:esp32@3.3.6 --config-file arduino-cli.yaml
|
arduino-cli core install esp32:esp32@3.3.10 --additional-urls https://espressif.github.io/arduino-esp32/package_esp32_index.json
|
||||||
|
touch .core
|
||||||
|
|
||||||
|
libs .libs:
|
||||||
arduino-cli lib update-index
|
arduino-cli lib update-index
|
||||||
arduino-cli lib install "FlixPeriph"
|
arduino-cli lib install "FlixPeriph"
|
||||||
arduino-cli lib install "MAVLink"@2.0.25
|
arduino-cli lib install "MAVLink"@2.0.25
|
||||||
touch .dependencies
|
touch .libs
|
||||||
|
|
||||||
|
upload_proxy: .core .libs
|
||||||
|
arduino-cli compile --fqbn $(BOARD) tools/espnow-proxy
|
||||||
|
arduino-cli upload --fqbn $(BOARD) -p "$(PORT)" tools/espnow-proxy
|
||||||
|
|
||||||
gazebo/build cmake: gazebo/CMakeLists.txt
|
gazebo/build cmake: gazebo/CMakeLists.txt
|
||||||
mkdir -p gazebo/build
|
mkdir -p gazebo/build
|
||||||
cd gazebo/build && cmake ..
|
cd gazebo/build && cmake ..
|
||||||
|
|
||||||
build_simulator: .dependencies gazebo/build
|
build_simulator: .libs gazebo/build
|
||||||
make -C gazebo/build
|
make -C gazebo/build
|
||||||
|
|
||||||
simulator: build_simulator
|
simulator: build_simulator
|
||||||
@@ -37,6 +49,6 @@ plot:
|
|||||||
plotjuggler -d $(shell ls -t tools/log/*.csv | head -n1)
|
plotjuggler -d $(shell ls -t tools/log/*.csv | head -n1)
|
||||||
|
|
||||||
clean:
|
clean:
|
||||||
rm -rf gazebo/build flix/build flix/cache .dependencies
|
rm -rf gazebo/build flix/build flix/cache .core .libs
|
||||||
|
|
||||||
.PHONY: build upload monitor dependencies cmake build_simulator simulator log clean
|
.PHONY: build upload monitor core libs cmake build_simulator simulator log clean
|
||||||
|
|||||||
@@ -21,8 +21,8 @@
|
|||||||
* Dedicated for education and research.
|
* Dedicated for education and research.
|
||||||
* Made from general-purpose components.
|
* Made from general-purpose components.
|
||||||
* Simple and clean source code in Arduino (<2k lines firmware).
|
* Simple and clean source code in Arduino (<2k lines firmware).
|
||||||
* Connectivity using Wi-Fi and MAVLink protocol.
|
* Communication using MAVLink protocol over Wi-Fi or ESP-NOW.
|
||||||
* Control using USB gamepad, remote control or smartphone.
|
* Control with USB gamepad, remote control or smartphone.
|
||||||
* Wireless command line interface and analyzing.
|
* Wireless command line interface and analyzing.
|
||||||
* Precise simulation with Gazebo.
|
* Precise simulation with Gazebo.
|
||||||
* Python library for scripting and automatic flights.
|
* Python library for scripting and automatic flights.
|
||||||
@@ -47,6 +47,14 @@ See the [user builds gallery](docs/user.md):
|
|||||||
|
|
||||||
<a href="docs/user.md"><img src="docs/img/user/user.jpg" width=500></a>
|
<a href="docs/user.md"><img src="docs/img/user/user.jpg" width=500></a>
|
||||||
|
|
||||||
|
### PCB
|
||||||
|
|
||||||
|
The official PCB *(Flix2)* is in development now. Follow the [project's channel](https://t.me/opensourcequadcopter) to track the progress.
|
||||||
|
|
||||||
|
Outdoor flights demo video of the current prototype:
|
||||||
|
|
||||||
|
<a href="https://youtu.be/KXlNmvUTi4g"><img width=300 src="https://i3.ytimg.com/vi/KXlNmvUTi4g/maxresdefault.jpg"></a>
|
||||||
|
|
||||||
## Simulation
|
## Simulation
|
||||||
|
|
||||||
The simulator is implemented using Gazebo and runs the original Arduino code:
|
The simulator is implemented using Gazebo and runs the original Arduino code:
|
||||||
@@ -71,12 +79,12 @@ Additional articles:
|
|||||||
|
|
||||||
|Type|Part|Image|Quantity|
|
|Type|Part|Image|Quantity|
|
||||||
|-|-|:-:|:-:|
|
|-|-|:-:|:-:|
|
||||||
|Microcontroller board|ESP32 Mini|<img src="docs/img/esp32.jpg" width=100>|1|
|
|Microcontroller board|ESP32 Mini.<br>ESP32-S3/ESP32-C3 boards are also supported.|<img src="docs/img/esp32.jpg" width=100>|1|
|
||||||
|IMU (and barometer¹) board|GY‑91, MPU-9265 (or other MPU‑9250/MPU‑6500 board)<br>ICM20948V2 (ICM‑20948)³<br>GY-521 (MPU-6050)³⁻¹|<img src="docs/img/gy-91.jpg" width=90 align=center><br><img src="docs/img/icm-20948.jpg" width=100><br><img src="docs/img/gy-521.jpg" width=100>|1|
|
|IMU (and barometer¹) board|GY‑91, MPU-9265 (or other MPU‑9250/MPU‑6500 board)<br>ICM20948V2 (ICM‑20948)<br>GY-521 (MPU-6050)|<img src="docs/img/gy-91.jpg" width=90 align=center><br><img src="docs/img/icm-20948.jpg" width=100><br><img src="docs/img/gy-521.jpg" width=100>|1|
|
||||||
|Boost converter (optional, for more stable power supply)|5V output|<img src="docs/img/buck-boost.jpg" width=100>|1|
|
|*Boost converter (optional, for more stable power supply)*|*5V output*|<img src="docs/img/buck-boost.jpg" width=100>|1|
|
||||||
|Motor|8520 3.7V brushed motor.<br>Motor with exact 3.7V voltage is needed, not ranged working voltage (3.7V — 6V).<br>Make sure the motor shaft diameter and propeller hole diameter match!|<img src="docs/img/motor.jpeg" width=100>|4|
|
|Motor|8520 3.7V brushed motor.<br>Motor with exact 3.7V voltage is needed, not ranged working voltage (3.7V — 6V).<br>Make sure the motor shaft diameter and propeller hole diameter match!|<img src="docs/img/motor.jpeg" width=100>|4|
|
||||||
|Propeller|55 mm or 65 mm|<img src="docs/img/prop.jpg" width=100>|4|
|
|Propeller|55 mm or 65 mm|<img src="docs/img/prop.jpg" width=100>|4|
|
||||||
|MOSFET (transistor)|100N03A or [analog](https://t.me/opensourcequadcopter/33)|<img src="docs/img/100n03a.jpg" width=100>|4|
|
|MOSFET (transistor)|UMW 100N03A or [analog](https://t.me/opensourcequadcopter/33).<br>Warning: don't use KIA 100N03A or other manufacturers, they might not work!|<img src="docs/img/100n03a.jpg" width=100>|4|
|
||||||
|Pull-down resistor<br>Voltage measurement resistor|10 kΩ|<img src="docs/img/resistor10k.jpg" width=100>|6|
|
|Pull-down resistor<br>Voltage measurement resistor|10 kΩ|<img src="docs/img/resistor10k.jpg" width=100>|6|
|
||||||
|3.7V Li-Po battery|LW 952540 (or any compatible by the size).<br>Make sure the battery has enough discharge rate — 25C or more!|<img src="docs/img/battery.jpg" width=100>|1|
|
|3.7V Li-Po battery|LW 952540 (or any compatible by the size).<br>Make sure the battery has enough discharge rate — 25C or more!|<img src="docs/img/battery.jpg" width=100>|1|
|
||||||
|Battery connector cable|MX2.0 2P female|<img src="docs/img/mx.png" width=100>|1|
|
|Battery connector cable|MX2.0 2P female|<img src="docs/img/mx.png" width=100>|1|
|
||||||
@@ -152,18 +160,16 @@ You can see a user-contributed [variant of complete circuit diagram](https://mir
|
|||||||
|-|-|
|
|-|-|
|
||||||
|GND|GND|
|
|GND|GND|
|
||||||
|VIN|VCC (or 3.3V depending on the receiver)|
|
|VIN|VCC (or 3.3V depending on the receiver)|
|
||||||
|Signal (TX)|GPIO4¹|
|
|Signal (TX)|GPIO4|
|
||||||
|
|
||||||
*¹ — UART2 RX pin was [changed](https://docs.espressif.com/projects/arduino-esp32/en/latest/migration_guides/2.x_to_3.0.html#id14) to GPIO4 in Arduino ESP32 core 3.0.*
|
* Optionally connect the battery voltage divider for voltage monitoring to any ADC1 pin (e. g. *GPIO32* on ESP32, *GPIO3* on ESP32-S3).
|
||||||
|
|
||||||
* Optionally connect the battery voltage divider for voltage monitoring to any ADC1 pin (e. g. *GPIO32* on ESP32, *GPIO3* on ESP32S3).
|
ESP32 and ESP32-S3 [can measure](https://docs.espressif.com/projects/arduino-esp32/en/latest/api/adc.html#analogsetattenuation) up to 3.1 V and ESP32-S3/ESP32-C3 can measure up to 2.5 V, so choose the voltage divider resistors accordingly.
|
||||||
|
|
||||||
ESP32 and ESP32S3 [can measure](https://docs.espressif.com/projects/arduino-esp32/en/latest/api/adc.html#analogsetattenuation) up to 3.1 V and ESP32S3/ESP32C3 can measure up to 2.5 V, so choose the voltage divider resistors accordingly.
|
|
||||||
|
|
||||||
## Resources
|
## Resources
|
||||||
|
|
||||||
* Telegram channel on developing the drone and the flight controller (in Russian): https://t.me/opensourcequadcopter.
|
* Telegram channel on developing the drone and the flight controller (in Russian): https://t.me/opensourcequadcopter.
|
||||||
* Official Telegram chat: https://t.me/opensourcequadcopterchat.
|
* Official Telegram chat: https://t.me/opensourcequadcopterchat (English / Russian).
|
||||||
* Detailed article on Habr.com about the development of the drone (in Russian): https://habr.com/ru/articles/814127/.
|
* Detailed article on Habr.com about the development of the drone (in Russian): https://habr.com/ru/articles/814127/.
|
||||||
|
|
||||||
## Disclaimer
|
## Disclaimer
|
||||||
|
|||||||
@@ -1,5 +0,0 @@
|
|||||||
board_manager:
|
|
||||||
additional_urls:
|
|
||||||
- https://raw.githubusercontent.com/espressif/arduino-esp32/gh-pages/package_esp32_index.json
|
|
||||||
network:
|
|
||||||
connection_timeout: 1h
|
|
||||||
@@ -67,6 +67,38 @@ In order to add a console command, modify the `doCommand()` function in `cli.ino
|
|||||||
>
|
>
|
||||||
> For on-the-ground commands, use `pause()` function, instead of `delay()`. This function allows to pause in a way that MAVLink connection will continue working.
|
> For on-the-ground commands, use `pause()` function, instead of `delay()`. This function allows to pause in a way that MAVLink connection will continue working.
|
||||||
|
|
||||||
|
### Parameter subsystem
|
||||||
|
|
||||||
|
Parameters subsystem (`parameters.ino`) uses standard [Preferences.h](https://docs.espressif.com/projects/arduino-esp32/en/latest/tutorials/preferences.html) ESP32 library to store parameters in non-volatile memory. Each parameter is a regular global variable, which is registered in the `parameters` array.
|
||||||
|
|
||||||
|
To add a new parameter:
|
||||||
|
|
||||||
|
1. Define a global variable for the parameter, two types are supported: `float` and `int`.
|
||||||
|
2. Add an entry to the `parameters` array, with the parameter name, a pointer to the variable, and optionally a callback function to call when the parameter is changed.
|
||||||
|
3. Everything else will be handled automatically.
|
||||||
|
|
||||||
|
See examples of adding new parameters in commits: [c434107](https://github.com/okalachev/flix/commit/c434107), [a687303](https://github.com/okalachev/flix/commit/a687303).
|
||||||
|
|
||||||
|
> [!NOTE]
|
||||||
|
> Since all the parameters are internally stored and passed as floats, the safe range for `int` parameters is -16777216 to 16777215.
|
||||||
|
|
||||||
|
## Adding a subsystem
|
||||||
|
|
||||||
|
To add a new subsystem:
|
||||||
|
|
||||||
|
1. Create a new `*.ino` file for your subsystem.
|
||||||
|
2. Define setup and loop functions for the subsystem, for example `setupMySubsystem()` and `loopMySubsystem()`.
|
||||||
|
3. Use `Rate` class if you need to limit the loop frequency, for example:
|
||||||
|
|
||||||
|
```cpp
|
||||||
|
Rate mySubsystemRate(100); // 100 Hz
|
||||||
|
|
||||||
|
void loopMySubsystem() {
|
||||||
|
if (!mySubsystemRate) return;
|
||||||
|
// Do something...
|
||||||
|
}
|
||||||
|
4. Add setup and loop calls in to `setup()` and `loop()` functions in `flix.ino`.
|
||||||
|
|
||||||
## Building the firmware
|
## Building the firmware
|
||||||
|
|
||||||
See build instructions in [usage.md](usage.md).
|
See build instructions in [usage.md](usage.md).
|
||||||
|
|||||||
|
After Width: | Height: | Size: 46 KiB |
|
After Width: | Height: | Size: 101 KiB |
|
After Width: | Height: | Size: 60 KiB |
|
After Width: | Height: | Size: 52 KiB |
|
After Width: | Height: | Size: 56 KiB |
|
After Width: | Height: | Size: 62 KiB |
|
After Width: | Height: | Size: 49 KiB |
|
After Width: | Height: | Size: 41 KiB |
|
After Width: | Height: | Size: 56 KiB |
|
After Width: | Height: | Size: 60 KiB |
|
After Width: | Height: | Size: 54 KiB |
|
After Width: | Height: | Size: 69 KiB |
|
After Width: | Height: | Size: 58 KiB |
@@ -5,7 +5,7 @@
|
|||||||
Do the following:
|
Do the following:
|
||||||
|
|
||||||
* **Check ESP32 core is installed**. Check if the version matches the one used in the [tutorial](usage.md#building-the-firmware).
|
* **Check ESP32 core is installed**. Check if the version matches the one used in the [tutorial](usage.md#building-the-firmware).
|
||||||
* **Check libraries**. Install all the required libraries from the tutorial. Make sure there are no MPU9250 or other peripherals libraries that may conflict with the ones used in the tutorial.
|
* **Check libraries**. Install all the required libraries from the tutorial. Make sure there are no MPU-9250 or other peripherals libraries that may conflict with the ones used in the tutorial.
|
||||||
* **Check the chosen board**. The correct board to choose in Arduino IDE for ESP32 Mini is *WEMOS D1 MINI ESP32*.
|
* **Check the chosen board**. The correct board to choose in Arduino IDE for ESP32 Mini is *WEMOS D1 MINI ESP32*.
|
||||||
|
|
||||||
## The drone doesn't fly
|
## The drone doesn't fly
|
||||||
|
|||||||
@@ -20,13 +20,14 @@ You can build and upload the firmware using either **Arduino IDE** (easier for b
|
|||||||
|
|
||||||
1. Install [Arduino IDE](https://www.arduino.cc/en/software) (version 2 is recommended).
|
1. Install [Arduino IDE](https://www.arduino.cc/en/software) (version 2 is recommended).
|
||||||
2. *Windows users might need to install [USB to UART bridge driver from Silicon Labs](https://www.silabs.com/developers/usb-to-uart-bridge-vcp-drivers).*
|
2. *Windows users might need to install [USB to UART bridge driver from Silicon Labs](https://www.silabs.com/developers/usb-to-uart-bridge-vcp-drivers).*
|
||||||
3. Install ESP32 core, version 3.3.6. See the [official Espressif's instructions](https://docs.espressif.com/projects/arduino-esp32/en/latest/installing.html#installing-using-arduino-ide) on installing ESP32 Core in Arduino IDE.
|
3. Install ESP32 core, version 3.3.10. See the [official Espressif's instructions](https://docs.espressif.com/projects/arduino-esp32/en/latest/installing.html#installing-using-arduino-ide) on installing ESP32 Core in Arduino IDE.
|
||||||
4. Install the following libraries using [Library Manager](https://docs.arduino.cc/software/ide-v2/tutorials/ide-v2-installing-a-library):
|
4. Install the following libraries using [Library Manager](https://docs.arduino.cc/software/ide-v2/tutorials/ide-v2-installing-a-library):
|
||||||
* `FlixPeriph`, the latest version.
|
* `FlixPeriph`, the latest version.
|
||||||
* `MAVLink`, version 2.0.25.
|
* `MAVLink`, version 2.0.25.
|
||||||
5. Open the `flix/flix.ino` sketch from downloaded firmware sources in Arduino IDE.
|
5. Open the `flix/flix.ino` sketch from downloaded firmware sources in Arduino IDE.
|
||||||
6. Connect your ESP32 board to the computer and choose correct board type in Arduino IDE (*WEMOS D1 MINI ESP32* for ESP32 Mini) and the port.
|
6. Connect your ESP32 board to the computer and choose correct board type in Arduino IDE (*WEMOS D1 MINI ESP32* for ESP32 Mini, *ESP32S3 Dev Module* for ESP32-S3 Super Mini) and the port.
|
||||||
7. [Build and upload](https://docs.arduino.cc/software/ide-v2/tutorials/getting-started/ide-v2-uploading-a-sketch) the firmware using Arduino IDE.
|
7. Set *Tools* ⇒ *Core Debug Level* to *Error* to see the errors in the serial console. Set *Tools* ⇒ *USB CDC on Boot* to *Enabled* for ESP32-S3/ESP32-C3 boards.
|
||||||
|
8. [Build and upload](https://docs.arduino.cc/software/ide-v2/tutorials/getting-started/ide-v2-uploading-a-sketch) the firmware using Arduino IDE.
|
||||||
|
|
||||||
### Command line (Windows, Linux, macOS)
|
### Command line (Windows, Linux, macOS)
|
||||||
|
|
||||||
@@ -57,6 +58,12 @@ You can build and upload the firmware using either **Arduino IDE** (easier for b
|
|||||||
make upload monitor
|
make upload monitor
|
||||||
```
|
```
|
||||||
|
|
||||||
|
For ESP32-S3/ESP32-C3 boards, set the appropriate [FQBN](https://docs.arduino.cc/arduino-cli/FAQ/#whats-the-fqbn-string) using `BOARD` parameter:
|
||||||
|
|
||||||
|
```bash
|
||||||
|
make BOARD=esp32:esp32:esp32s3:FlashSize=4M,CDCOnBoot=cdc upload
|
||||||
|
```
|
||||||
|
|
||||||
See other available Make commands in [Makefile](../Makefile).
|
See other available Make commands in [Makefile](../Makefile).
|
||||||
|
|
||||||
> [!TIP]
|
> [!TIP]
|
||||||
@@ -69,8 +76,25 @@ See other available Make commands in [Makefile](../Makefile).
|
|||||||
In case if using different IMU model than MPU9250, change `imu` variable declaration in the `imu.ino`:
|
In case if using different IMU model than MPU9250, change `imu` variable declaration in the `imu.ino`:
|
||||||
|
|
||||||
```cpp
|
```cpp
|
||||||
ICM20948 imu(SPI); // For ICM-20948
|
ICM20948 imu(SPI); // For ICM-20948 via SPI
|
||||||
MPU6050 imu(Wire); // For MPU-6050
|
// or
|
||||||
|
MPU6050 imu(Wire); // For MPU-6050 via I2C
|
||||||
|
```
|
||||||
|
|
||||||
|
If using non-default SPI pins, pass SCK, MISO, and MOSI pin numbers to `SPI.begin` call and SS pin to `imu` constructor like that:
|
||||||
|
|
||||||
|
```cpp
|
||||||
|
ICM20948(SPI, <SS>);
|
||||||
|
// ...
|
||||||
|
SPI.begin(<SCK>, <MISO>, <MOSI>);
|
||||||
|
imu.begin();
|
||||||
|
```
|
||||||
|
|
||||||
|
If using non-default I2C pins, pass SDA and SCL pin numbers to `Wire.setPins` call like that:
|
||||||
|
|
||||||
|
```cpp
|
||||||
|
Wire.begin(<SDA>, <SCL>);
|
||||||
|
imu.begin();
|
||||||
```
|
```
|
||||||
|
|
||||||
### Connect using QGroundControl
|
### Connect using QGroundControl
|
||||||
@@ -82,6 +106,9 @@ QGroundControl is a ground control station software that can be used to monitor
|
|||||||
3. Connect your computer or smartphone to the appeared `flix` Wi-Fi network (password: `flixwifi`).
|
3. Connect your computer or smartphone to the appeared `flix` Wi-Fi network (password: `flixwifi`).
|
||||||
4. Launch QGroundControl app. It should connect and begin showing the drone's telemetry automatically.
|
4. Launch QGroundControl app. It should connect and begin showing the drone's telemetry automatically.
|
||||||
|
|
||||||
|
> [!TIP]
|
||||||
|
> If QGroundControl doesn't connect, try to disable the firewall and/or VPN on your computer, as they may block the connection.
|
||||||
|
|
||||||
### Access console
|
### Access console
|
||||||
|
|
||||||
The console is a command line interface (CLI) that allows to interact with the drone, change parameters, and perform various actions. There are two ways of accessing the console: using **serial port** or using **QGroundControl (wirelessly)**.
|
The console is a command line interface (CLI) that allows to interact with the drone, change parameters, and perform various actions. There are two ways of accessing the console: using **serial port** or using **QGroundControl (wirelessly)**.
|
||||||
@@ -95,7 +122,7 @@ To access the console using serial port:
|
|||||||
To access the console using QGroundControl:
|
To access the console using QGroundControl:
|
||||||
|
|
||||||
1. Connect to the drone using QGroundControl app.
|
1. Connect to the drone using QGroundControl app.
|
||||||
2. Go to the QGroundControl menu ⇒ *Vehicle Setup* ⇒ *Analyze Tools* ⇒ *MAVLink Console*.
|
2. Go to the QGroundControl menu ⇒ *Analyze Tools* ⇒ *MAVLink Console*.
|
||||||
|
|
||||||
<img src="img/cli.png" width="400">
|
<img src="img/cli.png" width="400">
|
||||||
|
|
||||||
@@ -138,7 +165,7 @@ Before flight you need to calibrate the accelerometer:
|
|||||||
|
|
||||||
If using non-default motor pins, set the pin numbers using the parameters: `MOTOR_PIN_FL`, `MOTOR_PIN_FR`, `MOTOR_PIN_RL`, `MOTOR_PIN_RR` (front-left, front-right, rear-left, rear-right respectively).
|
If using non-default motor pins, set the pin numbers using the parameters: `MOTOR_PIN_FL`, `MOTOR_PIN_FR`, `MOTOR_PIN_RL`, `MOTOR_PIN_RR` (front-left, front-right, rear-left, rear-right respectively).
|
||||||
|
|
||||||
Certain ESP32 models (such as ESP32-S3) support a lower maximum PWM frequency; on these boards the parameter `MOT_PWM_FREQ` should be set to 38000 Hz.
|
Certain ESP32 models (such as ESP32-S3 and ESP32-C3) support a lower maximum PWM frequency; on these boards the parameter `MOT_PWM_FREQ` should be set to 38000 Hz.
|
||||||
|
|
||||||
If using brushless motors and ESCs:
|
If using brushless motors and ESCs:
|
||||||
|
|
||||||
@@ -170,7 +197,7 @@ After this setup, you should see the battery voltage in QGroundControl top panel
|
|||||||
|
|
||||||
2. Check the attitude estimation: connect to the drone using QGroundControl, rotate the drone in different orientations and check if the attitude estimation shown in QGroundControl is correct. Compare your attitude indicator (in the *large vertical* mode) to the video:
|
2. Check the attitude estimation: connect to the drone using QGroundControl, rotate the drone in different orientations and check if the attitude estimation shown in QGroundControl is correct. Compare your attitude indicator (in the *large vertical* mode) to the video:
|
||||||
|
|
||||||
<a href="https://youtu.be/yVRN23-GISU"><img width=300 src="https://i3.ytimg.com/vi/yVRN23-GISU/maxresdefault.jpg"></a>
|
<a href="https://youtu.be/yVRN23-GISU"><img width=300 src="https://i3.ytimg.com/vi/yVRN23-GISU/maxresdefault.jpg"></a>
|
||||||
|
|
||||||
3. Perform motor tests. Use the following commands **— remove the propellers before running the tests!**
|
3. Perform motor tests. Use the following commands **— remove the propellers before running the tests!**
|
||||||
|
|
||||||
@@ -188,10 +215,22 @@ After this setup, you should see the battery voltage in QGroundControl top panel
|
|||||||
|
|
||||||
## Setup remote control
|
## Setup remote control
|
||||||
|
|
||||||
There are several ways to control the drone's flight: using **smartphone** (Wi-Fi), using **SBUS remote control**, or using **USB remote control** (Wi-Fi).
|
There are several ways to control the drone's flight: using **smartphone** (Wi-Fi), using **SBUS remote control**, or using **USB remote control** (Wi-Fi/ESP-NOW).
|
||||||
|
|
||||||
### Control with a smartphone
|
### Control with a smartphone
|
||||||
|
|
||||||
|
#### Using Mavlink Joystick app (Android)
|
||||||
|
|
||||||
|
<img src="https://github.com/goldarte/mavlink-joystick/blob/master/app_screen.png?raw=true" width="400">
|
||||||
|
|
||||||
|
1. Download and install [Mavlink Joystick app](https://github.com/goldarte/mavlink-joystick/releases/latest).
|
||||||
|
2. Power the drone using the battery.
|
||||||
|
3. Connect your smartphone to the appeared `flix` Wi-Fi network (password: `flixwifi`).
|
||||||
|
4. Open Mavlink Joystick app. It should connect and begin showing the drone's telemetry automatically.
|
||||||
|
5. Use the virtual joystick to fly the drone!
|
||||||
|
|
||||||
|
#### Using QGroundControl app
|
||||||
|
|
||||||
1. Install [QGroundControl mobile app](https://docs.qgroundcontrol.com/master/en/qgc-user-guide/getting_started/download_and_install.html#android) on your smartphone.
|
1. Install [QGroundControl mobile app](https://docs.qgroundcontrol.com/master/en/qgc-user-guide/getting_started/download_and_install.html#android) on your smartphone.
|
||||||
2. Power the drone using the battery.
|
2. Power the drone using the battery.
|
||||||
3. Connect your smartphone to the appeared `flix` Wi-Fi network (password: `flixwifi`).
|
3. Connect your smartphone to the appeared `flix` Wi-Fi network (password: `flixwifi`).
|
||||||
@@ -204,11 +243,11 @@ There are several ways to control the drone's flight: using **smartphone** (Wi-F
|
|||||||
|
|
||||||
### Control with a remote control
|
### Control with a remote control
|
||||||
|
|
||||||
Before using SBUS-connected remote control you need to enable SBUS and calibrate it:
|
If using SBUS-connected remote control you need to enable SBUS and calibrate it:
|
||||||
|
|
||||||
1. Connect to the drone using QGroundControl.
|
1. Connect to the drone using QGroundControl.
|
||||||
2. In parameters, set the `RC_RX_PIN` parameter to the GPIO pin number where the SBUS signal is connected, for example: 4. Negative value disables SBUS.
|
2. In parameters, set the `RC_RX_PIN` parameter to the GPIO pin number where the SBUS signal is connected, for example: 4. Negative value disables SBUS.
|
||||||
3. Reboot the drone to apply changes.
|
3. Check if the receiver is working using `rc` command in the console.
|
||||||
4. Open the console, type `cr` command and follow the instructions to calibrate the remote control.
|
4. Open the console, type `cr` command and follow the instructions to calibrate the remote control.
|
||||||
5. Use the remote control to fly the drone!
|
5. Use the remote control to fly the drone!
|
||||||
|
|
||||||
@@ -221,7 +260,7 @@ If your drone doesn't have RC receiver installed, you can use USB remote control
|
|||||||
3. Power up the drone.
|
3. Power up the drone.
|
||||||
4. Connect your computer to the appeared `flix` Wi-Fi network (password: `flixwifi`).
|
4. Connect your computer to the appeared `flix` Wi-Fi network (password: `flixwifi`).
|
||||||
5. Launch QGroundControl app. It should connect and begin showing the drone's telemetry automatically.
|
5. Launch QGroundControl app. It should connect and begin showing the drone's telemetry automatically.
|
||||||
6. Go the the QGroundControl menu ⇒ *Vehicle Setup* ⇒ *Joystick*. Calibrate you USB remote control there.
|
6. Go to the QGroundControl menu ⇒ *Vehicle Setup* ⇒ *Joystick*. Calibrate your USB remote control there.
|
||||||
7. Use the USB remote control to fly the drone!
|
7. Use the USB remote control to fly the drone!
|
||||||
|
|
||||||
## Flight
|
## Flight
|
||||||
@@ -278,11 +317,8 @@ The Wi-Fi mode is chosen using `WIFI_MODE` parameter in QGroundControl or in the
|
|||||||
|
|
||||||
* `0` — Wi-Fi is disabled.
|
* `0` — Wi-Fi is disabled.
|
||||||
* `1` — Access Point mode *(AP)* — the drone creates a Wi-Fi network.
|
* `1` — Access Point mode *(AP)* — the drone creates a Wi-Fi network.
|
||||||
* `2` — Client mode *(STA)* — the drone connects to an existing Wi-Fi network.
|
* `2` — Client mode *(STA)* — the drone connects to an existing Wi-Fi network (may cause additional delays, so generally not recommended).
|
||||||
* `3` — *ESP-NOW (not implemented yet)*.
|
* `3` — ESP-NOW mode — the drone uses ESP-NOW protocol for communication.
|
||||||
|
|
||||||
> [!WARNING]
|
|
||||||
> Tests showed that Client mode may cause **additional delays** in remote control (due to retranslations), so it's generally not recommended.
|
|
||||||
|
|
||||||
The SSID and password are configured using the `ap` and `sta` console commands:
|
The SSID and password are configured using the `ap` and `sta` console commands:
|
||||||
|
|
||||||
@@ -304,9 +340,43 @@ Disabling Wi-Fi:
|
|||||||
p WIFI_MODE 0
|
p WIFI_MODE 0
|
||||||
```
|
```
|
||||||
|
|
||||||
|
### Using ESP-NOW
|
||||||
|
|
||||||
|
[ESP-NOW](https://docs.espressif.com/projects/esp-idf/en/stable/esp32/api-reference/network/esp_now.html) is a low level wireless communication protocol. It can provide lower latency, better reliability, and longer range than Wi-Fi. However, it requires a second ESP32 board to be used as a proxy for the computer.
|
||||||
|
|
||||||
|
<img src="img/espnow-connection.jpg" width="600">
|
||||||
|
|
||||||
|
To setup ESP-NOW communication:
|
||||||
|
|
||||||
|
1. Flash the second ESP32 board with ESP-NOW proxy sketch: [`tools/espnow-proxy/espnow-proxy.ino`](../tools/espnow-proxy/espnow-proxy.ino). Use Arduino IDE or command line: `make upload_proxy`.
|
||||||
|
|
||||||
|
2. Open Serial Monitor in Arduino IDE or use `make monitor` command. The ESP32 will print its MAC address and generated encryption key, for example:
|
||||||
|
|
||||||
|
```
|
||||||
|
espnow 7a:c8:e3:eb:bf:e9 &PiuSysxP9+$L&5E
|
||||||
|
```
|
||||||
|
|
||||||
|
Run this line as a console command on each drone you want to bind to this proxy board. [The maximum number](https://github.com/espressif/esp-idf/blob/e95cab4be8fd293e3f3323181e7a2280874da6f7/components/esp_wifi/include/esp_now.h#L32-L33) of simultaneously connected drones is 20 (unencrypted) or 6 (encrypted).
|
||||||
|
|
||||||
|
3. Set the `WIFI_MODE` parameter to `3` on the drone:
|
||||||
|
|
||||||
|
```
|
||||||
|
p WIFI_MODE 3
|
||||||
|
```
|
||||||
|
|
||||||
|
4. Go to the QGroundControl menu ⇒ *Application Settings* ⇒ *Comm Links*, add new link with the following settings:
|
||||||
|
* Name: ESP32.
|
||||||
|
* Type: Serial.
|
||||||
|
* Serial Port: choose the port of the proxy ESP32 board, e. g. `/dev/cu.usbserial-0001`.
|
||||||
|
* Baud Rate: 115200.
|
||||||
|
5. Click *Save*, click *Connect*. QGroundControl should connect to the drone using ESP-NOW and begin showing the telemetry.
|
||||||
|
|
||||||
|
> [!TIP]
|
||||||
|
> Make sure Arduino IDE is not running when using ESP-NOW proxy board, as it may block it.
|
||||||
|
|
||||||
## Flight log
|
## Flight log
|
||||||
|
|
||||||
After the flight, you can download the flight log for analysis wirelessly. Use the following command on your computer for that:
|
After the flight, you can download the flight log wirelessly for analysis. Use the following command on your computer for that:
|
||||||
|
|
||||||
```bash
|
```bash
|
||||||
make log
|
make log
|
||||||
|
|||||||
@@ -4,6 +4,46 @@ This page contains user-built drones based on the Flix project. Publish your pro
|
|||||||
|
|
||||||
---
|
---
|
||||||
|
|
||||||
|
Author: Alican Erüst.<br>
|
||||||
|
Description: QX95 mm frame, 55 mm propellers, 3.7 V 25C 1050 mAh LiPo battery, MPU6050 IMU, Logitech F310 gamepad controller, with a total quadcopter weight of 66 g.
|
||||||
|
|
||||||
|
<img src="img/user/alicanerus/1.jpg" height=200> <img src="img/user/alicanerus/2.jpg" height=200> <img src="img/user/alicanerus/3.jpg" height=200>
|
||||||
|
|
||||||
|
[Flight video](https://drive.google.com/file/d/1k0WeWTKnCAfaugkX7LcmNxsUuq79RL8Z/view?usp=sharing).
|
||||||
|
|
||||||
|
---
|
||||||
|
|
||||||
|
Author: [Неруш Михаил](https://t.me/NerushMV).<br>
|
||||||
|
Description: custom frame made of 4 mm plywood, 8520 brushed motors, 75 mm propellers, MPU-6500. FlySky FS-i6X with ESP32-based adapter for ESP-NOW communication (using PPM output).<br>
|
||||||
|
Sources and materials: [link](https://drive.google.com/drive/folders/1uWiDcuorLrtVs_IIR7Y13omij-7Q1nx8).
|
||||||
|
|
||||||
|
<img src="img/user/nerush/1.jpg" height=200> <img src="img/user/nerush/2.jpg" height=200>
|
||||||
|
|
||||||
|
[Flight video](https://drive.google.com/file/d/1jRXeGx34lJpUfw0GKLQeIzkWZvooQJSE/view?usp=sharing).
|
||||||
|
|
||||||
|
---
|
||||||
|
|
||||||
|
Author: [Konstantinos Paraskevas](https://github.com/Frapais).<br>
|
||||||
|
Description: drone with a custom single-boarded airframe, extending the [Sprig-C3 module](https://github.com/Frapais/Sprig-C3).
|
||||||
|
ESP32-C3 microcontroller, ICM-20948 IMU, on-board fuel-gauge, status LED indicator.<br>
|
||||||
|
Repository with all the code and PCB sources: https://github.com/Frapais/Sprig-Drone.
|
||||||
|
|
||||||
|
<img src="img/user/kostas/1.jpg" height=150> <img src="img/user/kostas/2.jpg" height=150>
|
||||||
|
|
||||||
|
Detailed video about making the drone:
|
||||||
|
|
||||||
|
<a href="https://youtu.be/82Q-uBq6s48"><img width=400 src="https://i3.ytimg.com/vi/82Q-uBq6s48/maxresdefault.jpg"></a>
|
||||||
|
|
||||||
|
---
|
||||||
|
|
||||||
|
Author: [Awab Anas](http://t.me/AW_VENOM).<br>
|
||||||
|
Description: ESP32 D1 Mini, MPU-6050, 8520 3.7V brushed motors, 55 mm propellers, battery li-po 1200 mAh, controlling via [Mavlink Joystick app](https://github.com/goldarte/mavlink-joystick/releases/latest).<br>
|
||||||
|
[Flight validation](https://drive.google.com/file/d/12z0jfctZDBA6b5UKCG0Uje5rAxj6DhF-/view?usp=sharing).
|
||||||
|
|
||||||
|
<img src="img/user/aw_venom/1.jpg" height=200>
|
||||||
|
|
||||||
|
---
|
||||||
|
|
||||||
Author: [Ina Tix](https://t.me/ina_tix).<br>
|
Author: [Ina Tix](https://t.me/ina_tix).<br>
|
||||||
Description: XR2981 based DC-DC converter, ELRS MINI 2.4GHz RX SX1280 receiver (SBUS interface), Radiomaster TX12 remote control.<br>
|
Description: XR2981 based DC-DC converter, ELRS MINI 2.4GHz RX SX1280 receiver (SBUS interface), Radiomaster TX12 remote control.<br>
|
||||||
[Flight validation](https://drive.google.com/file/d/1yqkKNuz4R_yxGqUNQxVpixJbXqEEcUSj/view?usp=share_link).
|
[Flight validation](https://drive.google.com/file/d/1yqkKNuz4R_yxGqUNQxVpixJbXqEEcUSj/view?usp=share_link).
|
||||||
@@ -12,6 +52,14 @@ Description: XR2981 based DC-DC converter, ELRS MINI 2.4GHz RX SX1280 receiver (
|
|||||||
|
|
||||||
---
|
---
|
||||||
|
|
||||||
|
Author: Oleg Kalachev.<br>
|
||||||
|
Description: the first attempt on making an official PCB based Flix drone (Flix2 board). The IMU is not working on this version, so an external MPU-6050 board was used, therefore considered as **Flix version 1.5**.<br>
|
||||||
|
[Flight video](https://drive.google.com/file/d/1R7tuUsFmPY0CGcOCFfMFaCp9kR49K3bl/view?usp=sharing).
|
||||||
|
|
||||||
|
<img src="img/flix1.5.jpg" width=300>
|
||||||
|
|
||||||
|
---
|
||||||
|
|
||||||
Author: [FanBy0ru](https://https://github.com/FanBy0ru).<br>
|
Author: [FanBy0ru](https://https://github.com/FanBy0ru).<br>
|
||||||
Description: custom 3D-printed frame.<br>
|
Description: custom 3D-printed frame.<br>
|
||||||
Frame STLs and flight validation: https://cults3d.com/en/3d-model/gadget/armature-pour-flix-drone.
|
Frame STLs and flight validation: https://cults3d.com/en/3d-model/gadget/armature-pour-flix-drone.
|
||||||
@@ -49,6 +97,17 @@ Author: [goldarte](https://t.me/goldarte).<br>
|
|||||||
|
|
||||||
---
|
---
|
||||||
|
|
||||||
|
Author: [malagis](https://oshwhub.com/malagis).<br>
|
||||||
|
|
||||||
|
A Chinese custom PCB version of Flix with a big community of users, lots of materials and modifications.
|
||||||
|
|
||||||
|
Main project's page: https://oshwhub.com/malagis/esp32-mini-plane.<br>
|
||||||
|
Video about the project: https://www.bilibili.com/video/BV14vyqBFEJn/.
|
||||||
|
|
||||||
|
<img src="img/user/malagis/1.jpg" height=200> <img src="img/user/malagis/2.jpg" height=200> <img src="img/user/malagis/3.jpg" height=200>
|
||||||
|
|
||||||
|
---
|
||||||
|
|
||||||
## School 548 course
|
## School 548 course
|
||||||
|
|
||||||
Special course on quadcopter design and engineering took place in october-november 2025 in School 548, Moscow. The course included UAV control theory, electronics, drone assembly and setup practice, using the Flix project.
|
Special course on quadcopter design and engineering took place in october-november 2025 in School 548, Moscow. The course included UAV control theory, electronics, drone assembly and setup practice, using the Flix project.
|
||||||
|
|||||||
@@ -6,10 +6,11 @@
|
|||||||
#include "pid.h"
|
#include "pid.h"
|
||||||
#include "vector.h"
|
#include "vector.h"
|
||||||
#include "util.h"
|
#include "util.h"
|
||||||
#include "lpf.h"
|
#include "filter.h"
|
||||||
|
|
||||||
extern const int MOTOR_REAR_LEFT, MOTOR_REAR_RIGHT, MOTOR_FRONT_RIGHT, MOTOR_FRONT_LEFT;
|
extern const int MOTOR_REAR_LEFT, MOTOR_REAR_RIGHT, MOTOR_FRONT_RIGHT, MOTOR_FRONT_LEFT;
|
||||||
extern const int RAW, ACRO, STAB, AUTO;
|
extern const int RAW, ACRO, STAB, AUTO;
|
||||||
|
extern const int W_AP, W_STA, W_ESPNOW;
|
||||||
extern float t, dt, loopRate;
|
extern float t, dt, loopRate;
|
||||||
extern uint16_t channels[16];
|
extern uint16_t channels[16];
|
||||||
extern float controlTime;
|
extern float controlTime;
|
||||||
@@ -19,42 +20,50 @@ extern LowPassFilter<Vector> gyroBiasFilter;
|
|||||||
extern float voltage;
|
extern float voltage;
|
||||||
|
|
||||||
const char* motd =
|
const char* motd =
|
||||||
"\nWelcome to\n"
|
|
||||||
" _______ __ __ ___ ___\n"
|
" _______ __ __ ___ ___\n"
|
||||||
"| ____|| | | | \\ \\ / /\n"
|
"| ____|| | | | \\ \\ / /\n"
|
||||||
"| |__ | | | | \\ V /\n"
|
"| |__ | | | | \\ V /\n"
|
||||||
"| __| | | | | > <\n"
|
"| __| | | | | > <\n"
|
||||||
"| | | `----.| | / . \\\n"
|
"| | | `----.| | / . \\\n"
|
||||||
"|__| |_______||__| /__/ \\__\\\n\n"
|
"|__| |_______||__| /__/ \\__\\\n\n"
|
||||||
|
"(C) Oleg Kalachev\n"
|
||||||
|
"https://github.com/okalachev/flix\n\n"
|
||||||
"Commands:\n\n"
|
"Commands:\n\n"
|
||||||
"help - show help\n"
|
"help - show help\n"
|
||||||
"p - show all parameters\n"
|
"p - show all parameters\n"
|
||||||
"p <name> - show parameter\n"
|
"p <str> - show parameters starting with str\n"
|
||||||
"p <name> <value> - set parameter\n"
|
"p <name> <value> - set parameter\n"
|
||||||
"preset - reset parameters\n"
|
"preset - reset parameters\n"
|
||||||
"time - show time info\n"
|
"time - show time info\n"
|
||||||
"ps - show pitch/roll/yaw\n"
|
|
||||||
"psq - show attitude quaternion\n"
|
|
||||||
"imu - show IMU data\n"
|
"imu - show IMU data\n"
|
||||||
|
"ca - calibrate accel\n"
|
||||||
|
"st - show state estimation\n"
|
||||||
"arm - arm the drone\n"
|
"arm - arm the drone\n"
|
||||||
"disarm - disarm the drone\n"
|
"disarm - disarm the drone\n"
|
||||||
"raw/stab/acro/auto - set mode\n"
|
"raw/stab/acro/auto - set mode\n"
|
||||||
"rc - show RC data\n"
|
"rc - show RC data\n"
|
||||||
|
"cr - calibrate RC\n"
|
||||||
"pw - show power info\n"
|
"pw - show power info\n"
|
||||||
"wifi - show Wi-Fi info\n"
|
"wifi - show Wi-Fi info\n"
|
||||||
"ap <ssid> <password> - setup Wi-Fi access point\n"
|
"wifi ap/sta/espnow/off - set Wi-Fi mode\n"
|
||||||
"sta <ssid> <password> - setup Wi-Fi client mode\n"
|
"ap <ssid> <password> - configure Wi-Fi access point\n"
|
||||||
|
"sta <ssid> <password> - configure Wi-Fi client mode\n"
|
||||||
|
"espnow <mac> [<key>] - configure ESP-NOW peer\n"
|
||||||
"mot - show motor output\n"
|
"mot - show motor output\n"
|
||||||
|
"mfr/mfl/mrr/mrl [<thrust>] - test motor (remove props)\n"
|
||||||
"log [dump] - print log header [and data]\n"
|
"log [dump] - print log header [and data]\n"
|
||||||
"cr - calibrate RC\n"
|
"log - show log info\n"
|
||||||
"ca - calibrate accel\n"
|
"log header - show log header\n"
|
||||||
"mfr, mfl, mrr, mrl - test motor (remove props)\n"
|
"log reset - reset log\n"
|
||||||
|
"log <name> <rate> - setup log topic rate\n"
|
||||||
|
"l <str> - show log values starting with str\n"
|
||||||
|
"l expose <name> - expose log value to telemetry\n"
|
||||||
"sys - show system info\n"
|
"sys - show system info\n"
|
||||||
"reset - reset drone's state\n"
|
"reset - reset drone's state\n"
|
||||||
"reboot - reboot the drone\n";
|
"reboot - reboot the drone\n";
|
||||||
|
|
||||||
void print(const char* format, ...) {
|
void print(const char* format, ...) {
|
||||||
char buf[1000];
|
char buf[3000];
|
||||||
va_list args;
|
va_list args;
|
||||||
va_start(args, format);
|
va_start(args, format);
|
||||||
vsnprintf(buf, sizeof(buf), format, args);
|
vsnprintf(buf, sizeof(buf), format, args);
|
||||||
@@ -89,10 +98,8 @@ void doCommand(String str, bool echo = false) {
|
|||||||
// execute command
|
// execute command
|
||||||
if (command == "help" || command == "motd") {
|
if (command == "help" || command == "motd") {
|
||||||
print("%s\n", motd);
|
print("%s\n", motd);
|
||||||
} else if (command == "p" && arg0 == "") {
|
} else if (command == "p" && arg1 == "") {
|
||||||
printParameters();
|
printParameters(arg0.c_str());
|
||||||
} else if (command == "p" && arg0 != "" && arg1 == "") {
|
|
||||||
print("%s = %g\n", arg0.c_str(), getParameter(arg0.c_str()));
|
|
||||||
} else if (command == "p") {
|
} else if (command == "p") {
|
||||||
bool success = setParameter(arg0.c_str(), arg1.toFloat());
|
bool success = setParameter(arg0.c_str(), arg1.toFloat());
|
||||||
if (success) {
|
if (success) {
|
||||||
@@ -106,15 +113,15 @@ void doCommand(String str, bool echo = false) {
|
|||||||
print("Time: %f\n", t);
|
print("Time: %f\n", t);
|
||||||
print("Loop rate: %.0f\n", loopRate);
|
print("Loop rate: %.0f\n", loopRate);
|
||||||
print("dt: %f\n", dt);
|
print("dt: %f\n", dt);
|
||||||
} else if (command == "ps") {
|
|
||||||
Vector a = attitude.toEuler();
|
|
||||||
print("roll: %f pitch: %f yaw: %f\n", degrees(a.x), degrees(a.y), degrees(a.z));
|
|
||||||
} else if (command == "psq") {
|
|
||||||
print("qw: %f qx: %f qy: %f qz: %f\n", attitude.w, attitude.x, attitude.y, attitude.z);
|
|
||||||
} else if (command == "imu") {
|
} else if (command == "imu") {
|
||||||
printIMUInfo();
|
printIMUInfo();
|
||||||
printIMUCalibration();
|
printIMUCalibration();
|
||||||
print("landed: %d\n", landed);
|
print("landed: %d\n", landed);
|
||||||
|
} else if (command == "st") {
|
||||||
|
print("rates: %g %g %g\n", rates.x, rates.y, rates.z);
|
||||||
|
print("attitude: %g %g %g %g\n", attitude.w, attitude.x, attitude.y, attitude.z);
|
||||||
|
print("roll: %g° pitch: %g° yaw: %g°\n", degrees(attitude.getRoll()), degrees(attitude.getPitch()), degrees(attitude.getYaw()));
|
||||||
|
print("landed: %d\n", landed);
|
||||||
} else if (command == "arm") {
|
} else if (command == "arm") {
|
||||||
armed = true;
|
armed = true;
|
||||||
} else if (command == "disarm") {
|
} else if (command == "disarm") {
|
||||||
@@ -139,38 +146,54 @@ void doCommand(String str, bool echo = false) {
|
|||||||
print("armed: %d\n", armed);
|
print("armed: %d\n", armed);
|
||||||
} else if (command == "pw") {
|
} else if (command == "pw") {
|
||||||
print("Voltage: %.1f V\n", voltage);
|
print("Voltage: %.1f V\n", voltage);
|
||||||
} else if (command == "wifi") {
|
} else if (command == "wifi" && arg0 == "") {
|
||||||
printWiFiInfo();
|
printWiFiInfo();
|
||||||
|
} else if (command == "wifi") {
|
||||||
|
setWiFiMode(arg0);
|
||||||
} else if (command == "ap") {
|
} else if (command == "ap") {
|
||||||
configWiFi(true, arg0.c_str(), arg1.c_str());
|
configWiFi(W_AP, arg0.c_str(), arg1.c_str());
|
||||||
} else if (command == "sta") {
|
} else if (command == "sta") {
|
||||||
configWiFi(false, arg0.c_str(), arg1.c_str());
|
configWiFi(W_STA, arg0.c_str(), arg1.c_str());
|
||||||
|
} else if (command == "espnow") {
|
||||||
|
configWiFi(W_ESPNOW, arg0.c_str(), arg1.c_str());
|
||||||
} else if (command == "mot") {
|
} else if (command == "mot") {
|
||||||
print("front-right %g front-left %g rear-right %g rear-left %g\n",
|
print("front-right %g front-left %g rear-right %g rear-left %g\n",
|
||||||
motors[MOTOR_FRONT_RIGHT], motors[MOTOR_FRONT_LEFT], motors[MOTOR_REAR_RIGHT], motors[MOTOR_REAR_LEFT]);
|
motors[MOTOR_FRONT_RIGHT], motors[MOTOR_FRONT_LEFT], motors[MOTOR_REAR_RIGHT], motors[MOTOR_REAR_LEFT]);
|
||||||
} else if (command == "log") {
|
} else if (command == "log" && arg0 == "") {
|
||||||
|
printLogInfo();
|
||||||
|
} else if (command == "log" && arg1 != "") {
|
||||||
|
configLogThrottle(arg0.c_str(), arg1.toFloat());
|
||||||
|
} else if (command == "log" && arg0 == "header") {
|
||||||
printLogHeader();
|
printLogHeader();
|
||||||
if (arg0 == "dump") printLogData();
|
} else if (command == "log" && arg0 == "reset") {
|
||||||
|
resetLog();
|
||||||
|
} else if (command == "l" && arg0 == "expose" && arg1 != "") {
|
||||||
|
exposeLogValue(arg1.c_str());
|
||||||
|
} else if (command == "l") {
|
||||||
|
printLogValues(arg0.c_str());
|
||||||
} else if (command == "cr") {
|
} else if (command == "cr") {
|
||||||
calibrateRC();
|
calibrateRC();
|
||||||
} else if (command == "ca") {
|
} else if (command == "ca") {
|
||||||
calibrateAccel();
|
calibrateAccel();
|
||||||
} else if (command == "mfr") {
|
} else if (command == "mfr") {
|
||||||
testMotor(MOTOR_FRONT_RIGHT);
|
testMotor(MOTOR_FRONT_RIGHT, arg0.isEmpty() ? 0.2 : arg0.toFloat());
|
||||||
} else if (command == "mfl") {
|
} else if (command == "mfl") {
|
||||||
testMotor(MOTOR_FRONT_LEFT);
|
testMotor(MOTOR_FRONT_LEFT, arg0.isEmpty() ? 0.2 : arg0.toFloat());
|
||||||
} else if (command == "mrr") {
|
} else if (command == "mrr") {
|
||||||
testMotor(MOTOR_REAR_RIGHT);
|
testMotor(MOTOR_REAR_RIGHT, arg0.isEmpty() ? 0.2 : arg0.toFloat());
|
||||||
} else if (command == "mrl") {
|
} else if (command == "mrl") {
|
||||||
testMotor(MOTOR_REAR_LEFT);
|
testMotor(MOTOR_REAR_LEFT, arg0.isEmpty() ? 0.2 : arg0.toFloat());
|
||||||
} else if (command == "sys") {
|
} else if (command == "sys") {
|
||||||
#ifdef ESP32
|
#ifdef ESP32
|
||||||
print("Chip: %s\n", ESP.getChipModel());
|
print("Chip: %s\n", ESP.getChipModel());
|
||||||
print("Temperature: %.1f °C\n", temperatureRead());
|
print("Temperature: %.1f °C\n", temperatureRead());
|
||||||
print("Free heap: %d\n", ESP.getFreeHeap());
|
print("Total RAM: %d KB\n", ESP.getHeapSize() / 1024);
|
||||||
|
print("Free heap: %d KB\n", ESP.getFreeHeap() / 1024);
|
||||||
|
print("PSRAM: %d KB\n", ESP.getPsramSize() / 1024);
|
||||||
|
print("Free PSRAM: %d KB\n", ESP.getFreePsram() / 1024);
|
||||||
print("Firmware: " __DATE__ " " __TIME__ "\n");
|
print("Firmware: " __DATE__ " " __TIME__ "\n");
|
||||||
// Print tasks table
|
// Print tasks table
|
||||||
print("Num Task Stack Prio Core CPU%%\n");
|
print("Num Task MinSt Prio Core CPU%%\n");
|
||||||
int taskCount = uxTaskGetNumberOfTasks();
|
int taskCount = uxTaskGetNumberOfTasks();
|
||||||
TaskStatus_t *systemState = new TaskStatus_t[taskCount];
|
TaskStatus_t *systemState = new TaskStatus_t[taskCount];
|
||||||
uint32_t totalRunTime;
|
uint32_t totalRunTime;
|
||||||
@@ -204,7 +227,7 @@ void handleInput() {
|
|||||||
|
|
||||||
while (Serial.available()) {
|
while (Serial.available()) {
|
||||||
char c = Serial.read();
|
char c = Serial.read();
|
||||||
if (c == '\n') {
|
if (c == '\n' || c == '\r') {
|
||||||
doCommand(input);
|
doCommand(input);
|
||||||
input.clear();
|
input.clear();
|
||||||
} else {
|
} else {
|
||||||
|
|||||||
@@ -6,7 +6,7 @@
|
|||||||
#include "vector.h"
|
#include "vector.h"
|
||||||
#include "quaternion.h"
|
#include "quaternion.h"
|
||||||
#include "pid.h"
|
#include "pid.h"
|
||||||
#include "lpf.h"
|
#include "filter.h"
|
||||||
#include "util.h"
|
#include "util.h"
|
||||||
|
|
||||||
#define PITCHRATE_P 0.05
|
#define PITCHRATE_P 0.05
|
||||||
@@ -149,6 +149,7 @@ void controlTorque() {
|
|||||||
motors[MOTOR_REAR_LEFT] = thrustTarget + torqueTarget.x + torqueTarget.y - torqueTarget.z;
|
motors[MOTOR_REAR_LEFT] = thrustTarget + torqueTarget.x + torqueTarget.y - torqueTarget.z;
|
||||||
motors[MOTOR_REAR_RIGHT] = thrustTarget - torqueTarget.x + torqueTarget.y + torqueTarget.z;
|
motors[MOTOR_REAR_RIGHT] = thrustTarget - torqueTarget.x + torqueTarget.y + torqueTarget.z;
|
||||||
|
|
||||||
|
// Prioritize angle control over thrust control
|
||||||
desaturate(motors[MOTOR_FRONT_LEFT], motors[MOTOR_FRONT_RIGHT], motors[MOTOR_REAR_LEFT], motors[MOTOR_REAR_RIGHT]);
|
desaturate(motors[MOTOR_FRONT_LEFT], motors[MOTOR_FRONT_RIGHT], motors[MOTOR_REAR_LEFT], motors[MOTOR_REAR_RIGHT]);
|
||||||
|
|
||||||
motors[0] = constrain(motors[0], 0, 1);
|
motors[0] = constrain(motors[0], 0, 1);
|
||||||
|
|||||||
@@ -5,7 +5,7 @@
|
|||||||
|
|
||||||
#include "quaternion.h"
|
#include "quaternion.h"
|
||||||
#include "vector.h"
|
#include "vector.h"
|
||||||
#include "lpf.h"
|
#include "filter.h"
|
||||||
#include "util.h"
|
#include "util.h"
|
||||||
|
|
||||||
Vector rates; // estimated angular rates, rad/s
|
Vector rates; // estimated angular rates, rad/s
|
||||||
@@ -15,6 +15,12 @@ bool landed;
|
|||||||
float accWeight = 0.003;
|
float accWeight = 0.003;
|
||||||
float levelWeight = 0.0002;
|
float levelWeight = 0.0002;
|
||||||
LowPassFilter<Vector> ratesFilter(0.2); // cutoff frequency ~ 40 Hz
|
LowPassFilter<Vector> ratesFilter(0.2); // cutoff frequency ~ 40 Hz
|
||||||
|
NotchFilter<Vector> ratesNotch(382, 0);
|
||||||
|
|
||||||
|
void setupEstimate() {
|
||||||
|
print("Setup estimation\n");
|
||||||
|
ratesNotch.reset();
|
||||||
|
}
|
||||||
|
|
||||||
void estimate() {
|
void estimate() {
|
||||||
applyGyro();
|
applyGyro();
|
||||||
@@ -25,6 +31,7 @@ void estimate() {
|
|||||||
void applyGyro() {
|
void applyGyro() {
|
||||||
// filter gyro to get angular rates
|
// filter gyro to get angular rates
|
||||||
rates = ratesFilter.update(gyro);
|
rates = ratesFilter.update(gyro);
|
||||||
|
rates = ratesNotch.update(rates);
|
||||||
|
|
||||||
// apply rates to attitude
|
// apply rates to attitude
|
||||||
attitude = Quaternion::rotate(attitude, Quaternion::fromRotationVector(rates * dt));
|
attitude = Quaternion::rotate(attitude, Quaternion::fromRotationVector(rates * dt));
|
||||||
@@ -32,8 +39,7 @@ void applyGyro() {
|
|||||||
|
|
||||||
void applyAcc() {
|
void applyAcc() {
|
||||||
// test should we apply accelerometer gravity correction
|
// test should we apply accelerometer gravity correction
|
||||||
float accNorm = acc.norm();
|
landed = !motorsActive() && abs(acc.norm() - ONE_G) < ONE_G * 0.1f;
|
||||||
landed = !motorsActive() && abs(accNorm - ONE_G) < ONE_G * 0.1f;
|
|
||||||
|
|
||||||
if (!landed) return;
|
if (!landed) return;
|
||||||
|
|
||||||
@@ -47,6 +53,7 @@ void applyAcc() {
|
|||||||
|
|
||||||
void applyLevel() {
|
void applyLevel() {
|
||||||
if (landed) return;
|
if (landed) return;
|
||||||
|
if (thrustTarget < 0.1) return; // skip at idle thrust
|
||||||
|
|
||||||
// assume the pilot keeps the drone more or less level in flight
|
// assume the pilot keeps the drone more or less level in flight
|
||||||
Vector up = Quaternion::rotateVector(Vector(0, 0, 1), attitude);
|
Vector up = Quaternion::rotateVector(Vector(0, 0, 1), attitude);
|
||||||
|
|||||||
@@ -0,0 +1,98 @@
|
|||||||
|
// Copyright (c) 2023 Oleg Kalachev <okalachev@gmail.com>
|
||||||
|
// Repository: https://github.com/okalachev/flix
|
||||||
|
|
||||||
|
// Low pass and notch filters
|
||||||
|
|
||||||
|
#pragma once
|
||||||
|
|
||||||
|
template <typename T> // Using template to make the filter usable for scalar and vector values
|
||||||
|
class LowPassFilter {
|
||||||
|
public:
|
||||||
|
float alpha; // smoothing constant, 1 means filter disabled
|
||||||
|
T output;
|
||||||
|
|
||||||
|
LowPassFilter(float alpha): alpha(alpha) {};
|
||||||
|
|
||||||
|
T update(const T input) {
|
||||||
|
if (!init) {
|
||||||
|
init = true;
|
||||||
|
return output = input;
|
||||||
|
}
|
||||||
|
return output += alpha * (input - output);
|
||||||
|
}
|
||||||
|
|
||||||
|
void setCutOffFrequency(float cutOffFreq, float dt) {
|
||||||
|
alpha = 1 - exp(-2 * PI * cutOffFreq * dt);
|
||||||
|
}
|
||||||
|
|
||||||
|
void reset() {
|
||||||
|
init = false;
|
||||||
|
}
|
||||||
|
|
||||||
|
private:
|
||||||
|
bool init = false;
|
||||||
|
};
|
||||||
|
|
||||||
|
template <typename T>
|
||||||
|
class NotchFilter {
|
||||||
|
public:
|
||||||
|
float frequency;
|
||||||
|
float bandwidth;
|
||||||
|
T output;
|
||||||
|
|
||||||
|
NotchFilter(float frequency, float bandwidth): frequency(frequency), bandwidth(bandwidth) {
|
||||||
|
reset();
|
||||||
|
};
|
||||||
|
|
||||||
|
T update(const T input) {
|
||||||
|
if (frequency <= 0 || bandwidth <= 0) return input;
|
||||||
|
|
||||||
|
if (!init) {
|
||||||
|
init = true;
|
||||||
|
x1 = x2 = input;
|
||||||
|
y1 = y2 = input;
|
||||||
|
return output = input;
|
||||||
|
}
|
||||||
|
|
||||||
|
output = b0 * input + b1 * x1 + b2 * x2 - a1 * y1 - a2 * y2;
|
||||||
|
|
||||||
|
x2 = x1;
|
||||||
|
x1 = input;
|
||||||
|
y2 = y1;
|
||||||
|
y1 = output;
|
||||||
|
|
||||||
|
return output;
|
||||||
|
}
|
||||||
|
|
||||||
|
void reset() {
|
||||||
|
const float dt = 0.001f;
|
||||||
|
float f = frequency;
|
||||||
|
float bw = bandwidth;
|
||||||
|
if (f < 0) f = 0;
|
||||||
|
if (bw < 1e-6f) bw = 1e-6f;
|
||||||
|
|
||||||
|
float q = f / bw;
|
||||||
|
if (q < 1e-3f) q = 1e-3f;
|
||||||
|
|
||||||
|
const float w0 = 2.0f * PI * f * dt;
|
||||||
|
const float c = cos(w0);
|
||||||
|
const float s = sin(w0);
|
||||||
|
const float alpha = s / (2.0f * q);
|
||||||
|
|
||||||
|
const float a0 = 1.0f + alpha;
|
||||||
|
const float invA0 = 1.0f / a0;
|
||||||
|
|
||||||
|
b0 = 1.0f * invA0;
|
||||||
|
b1 = -2.0f * c * invA0;
|
||||||
|
b2 = 1.0f * invA0;
|
||||||
|
a1 = -2.0f * c * invA0;
|
||||||
|
a2 = (1.0f - alpha) * invA0;
|
||||||
|
|
||||||
|
init = false;
|
||||||
|
}
|
||||||
|
|
||||||
|
private:
|
||||||
|
float b0, b1, b2, a1, a2;
|
||||||
|
T x1, x2, y1, y2;
|
||||||
|
bool init = false;
|
||||||
|
};
|
||||||
@@ -17,7 +17,7 @@ extern float motors[4];
|
|||||||
|
|
||||||
void setup() {
|
void setup() {
|
||||||
Serial.begin(115200);
|
Serial.begin(115200);
|
||||||
print("Initializing flix\n");
|
print("Initializing Flix\n");
|
||||||
setupParameters();
|
setupParameters();
|
||||||
setupPower();
|
setupPower();
|
||||||
setupLED();
|
setupLED();
|
||||||
@@ -26,6 +26,8 @@ void setup() {
|
|||||||
setupWiFi();
|
setupWiFi();
|
||||||
setupIMU();
|
setupIMU();
|
||||||
setupRC();
|
setupRC();
|
||||||
|
setupEstimate();
|
||||||
|
setupLog();
|
||||||
setLED(false);
|
setLED(false);
|
||||||
print("Initializing complete\n");
|
print("Initializing complete\n");
|
||||||
}
|
}
|
||||||
@@ -40,6 +42,6 @@ void loop() {
|
|||||||
handleInput();
|
handleInput();
|
||||||
processMavlink();
|
processMavlink();
|
||||||
readVoltage();
|
readVoltage();
|
||||||
logData();
|
loopLog();
|
||||||
syncParameters();
|
syncParameters();
|
||||||
}
|
}
|
||||||
|
|||||||
@@ -6,7 +6,7 @@
|
|||||||
#include <SPI.h>
|
#include <SPI.h>
|
||||||
#include <FlixPeriph.h>
|
#include <FlixPeriph.h>
|
||||||
#include "vector.h"
|
#include "vector.h"
|
||||||
#include "lpf.h"
|
#include "filter.h"
|
||||||
#include "util.h"
|
#include "util.h"
|
||||||
|
|
||||||
MPU9250 imu(SPI);
|
MPU9250 imu(SPI);
|
||||||
@@ -40,10 +40,12 @@ void readIMU() {
|
|||||||
imu.getGyro(gyro.x, gyro.y, gyro.z);
|
imu.getGyro(gyro.x, gyro.y, gyro.z);
|
||||||
imu.getAccel(acc.x, acc.y, acc.z);
|
imu.getAccel(acc.x, acc.y, acc.z);
|
||||||
calibrateGyroOnce();
|
calibrateGyroOnce();
|
||||||
// apply scale and bias
|
|
||||||
|
// Apply scale and bias
|
||||||
acc = (acc - accBias) / accScale;
|
acc = (acc - accBias) / accScale;
|
||||||
gyro = gyro - gyroBias;
|
gyro = gyro - gyroBias;
|
||||||
// rotate to body frame
|
|
||||||
|
// Rotate to body frame
|
||||||
Quaternion rotation = Quaternion::fromEuler(imuRotation);
|
Quaternion rotation = Quaternion::fromEuler(imuRotation);
|
||||||
acc = Quaternion::rotateVector(acc, rotation.inversed());
|
acc = Quaternion::rotateVector(acc, rotation.inversed());
|
||||||
gyro = Quaternion::rotateVector(gyro, rotation.inversed());
|
gyro = Quaternion::rotateVector(gyro, rotation.inversed());
|
||||||
@@ -52,6 +54,7 @@ void readIMU() {
|
|||||||
void calibrateGyroOnce() {
|
void calibrateGyroOnce() {
|
||||||
static Delay landedDelay(2);
|
static Delay landedDelay(2);
|
||||||
if (!landedDelay.update(landed)) return; // calibrate only if definitely stationary
|
if (!landedDelay.update(landed)) return; // calibrate only if definitely stationary
|
||||||
|
|
||||||
gyroBias = gyroBiasFilter.update(gyro);
|
gyroBias = gyroBiasFilter.update(gyro);
|
||||||
}
|
}
|
||||||
|
|
||||||
@@ -105,6 +108,7 @@ void calibrateAccelOnce() {
|
|||||||
if (acc.x < accMin.x) accMin.x = acc.x;
|
if (acc.x < accMin.x) accMin.x = acc.x;
|
||||||
if (acc.y < accMin.y) accMin.y = acc.y;
|
if (acc.y < accMin.y) accMin.y = acc.y;
|
||||||
if (acc.z < accMin.z) accMin.z = acc.z;
|
if (acc.z < accMin.z) accMin.z = acc.z;
|
||||||
|
|
||||||
// Compute scale and bias
|
// Compute scale and bias
|
||||||
accScale = (accMax - accMin) / 2 / ONE_G;
|
accScale = (accMax - accMin) / 2 / ONE_G;
|
||||||
accBias = (accMax + accMin) / 2;
|
accBias = (accMax + accMin) / 2;
|
||||||
@@ -121,6 +125,7 @@ void printIMUInfo() {
|
|||||||
print("model: %s\n", imu.getModel());
|
print("model: %s\n", imu.getModel());
|
||||||
print("who am I: 0x%02X\n", imu.whoAmI());
|
print("who am I: 0x%02X\n", imu.whoAmI());
|
||||||
print("rate: %.0f\n", loopRate);
|
print("rate: %.0f\n", loopRate);
|
||||||
|
print("temperature: %.1f °C\n", imu.getTemp());
|
||||||
print("gyro: %f %f %f\n", gyro.x, gyro.y, gyro.z);
|
print("gyro: %f %f %f\n", gyro.x, gyro.y, gyro.z);
|
||||||
print("acc: %f %f %f\n", acc.x, acc.y, acc.z);
|
print("acc: %f %f %f\n", acc.x, acc.y, acc.z);
|
||||||
imu.waitForData();
|
imu.waitForData();
|
||||||
|
|||||||
@@ -1,77 +1,272 @@
|
|||||||
// Copyright (c) 2023 Oleg Kalachev <okalachev@gmail.com>
|
// Copyright (c) 2023 Oleg Kalachev <okalachev@gmail.com>
|
||||||
// Repository: https://github.com/okalachev/flix
|
// Repository: https://github.com/okalachev/flix
|
||||||
|
|
||||||
// In-RAM logging
|
// Logging subsystem
|
||||||
|
|
||||||
#include "vector.h"
|
#include "vector.h"
|
||||||
#include "util.h"
|
#include "util.h"
|
||||||
|
|
||||||
#define LOG_RATE 100
|
int logMemory = -1; // 0 - RAM, 1 - PSRAM, -1 - disabled
|
||||||
#define LOG_DURATION 10
|
float logUsage = 0.5; // fraction of free memory to use for log
|
||||||
#define LOG_SIZE LOG_DURATION * LOG_RATE
|
|
||||||
|
|
||||||
Vector attitudeEuler;
|
struct LogValue {
|
||||||
Vector attitudeTargetEuler;
|
|
||||||
|
|
||||||
struct LogEntry {
|
|
||||||
const char *name;
|
const char *name;
|
||||||
float *value;
|
Value value;
|
||||||
|
float lastValue = NAN;
|
||||||
|
bool logged = true; // if false, use only for triggering log update
|
||||||
|
LogValue() : name(nullptr), value() {}; // empty value constructor
|
||||||
|
template <typename T>
|
||||||
|
LogValue(const char *name, T value, bool logged = true) : name(name), value(value), logged(logged) {};
|
||||||
};
|
};
|
||||||
|
|
||||||
LogEntry logEntries[] = {
|
struct LogTopic {
|
||||||
{"t", &t},
|
LogValue values[10];
|
||||||
{"rates.x", &rates.x},
|
int length = 0; // number of logged values
|
||||||
{"rates.y", &rates.y},
|
float throttle; // max update rate, Hz
|
||||||
{"rates.z", &rates.z},
|
float lastUpdate = -INFINITY;
|
||||||
{"ratesTarget.x", &ratesTarget.x},
|
|
||||||
{"ratesTarget.y", &ratesTarget.y},
|
LogTopic(float throttle, LogValue v0, LogValue v1 = {}, LogValue v2 = {}, LogValue v3 = {}, LogValue v4 = {}, LogValue v5 = {}, LogValue v6 = {}, LogValue v7 = {}, LogValue v8 = {}, LogValue v9 = {}) :
|
||||||
{"ratesTarget.z", &ratesTarget.z},
|
throttle(throttle), values{v0, v1, v2, v3, v4, v5, v6, v7, v8, v9} {
|
||||||
{"attitude.x", &attitudeEuler.x},
|
// Count logged values
|
||||||
{"attitude.y", &attitudeEuler.y},
|
for (auto& v : values) {
|
||||||
{"attitude.z", &attitudeEuler.z},
|
if (v.name == nullptr) break;
|
||||||
{"attitudeTarget.x", &attitudeTargetEuler.x},
|
if (v.logged) length++;
|
||||||
{"attitudeTarget.y", &attitudeTargetEuler.y},
|
}
|
||||||
{"attitudeTarget.z", &attitudeTargetEuler.z},
|
};
|
||||||
{"thrustTarget", &thrustTarget}
|
|
||||||
|
LogTopic(LogValue v0, LogValue v1 = {}, LogValue v2 = {}, LogValue v3 = {}, LogValue v4 = {}, LogValue v5 = {}, LogValue v6 = {}, LogValue v7 = {}, LogValue v8 = {}, LogValue v9 = {}) :
|
||||||
|
LogTopic(INFINITY, v0, v1, v2, v3, v4, v5, v6, v7, v8, v9) {};
|
||||||
};
|
};
|
||||||
|
|
||||||
const int logColumns = sizeof(logEntries) / sizeof(logEntries[0]);
|
LogTopic logTopics[] = {
|
||||||
float logBuffer[LOG_SIZE][logColumns];
|
// time
|
||||||
|
LogTopic({"t", &t}), // must be the first topic
|
||||||
|
LogTopic(1, {"loopRate", &loopRate}),
|
||||||
|
|
||||||
void prepareLogData() {
|
// imu
|
||||||
attitudeEuler = attitude.toEuler();
|
LogTopic(
|
||||||
attitudeTargetEuler = attitudeTarget.toEuler();
|
{"gyro.x", &gyro.x},
|
||||||
}
|
{"gyro.y", &gyro.y},
|
||||||
|
{"gyro.z", &gyro.z}),
|
||||||
|
|
||||||
void logData() {
|
LogTopic(50,
|
||||||
if (!armed) return;
|
{"acc.x", &acc.x},
|
||||||
static int logPointer = 0;
|
{"acc.y", &acc.y},
|
||||||
static Rate period(LOG_RATE);
|
{"acc.z", &acc.z}),
|
||||||
if (!period) return;
|
|
||||||
|
|
||||||
prepareLogData();
|
LogTopic(10,
|
||||||
|
{"gyroBias.x", &gyroBias.x},
|
||||||
|
{"gyroBias.y", &gyroBias.y},
|
||||||
|
{"gyroBias.z", &gyroBias.z}),
|
||||||
|
|
||||||
for (int i = 0; i < logColumns; i++) {
|
// estimation
|
||||||
logBuffer[logPointer][i] = *logEntries[i].value;
|
LogTopic(50,
|
||||||
}
|
{"rates.x", &rates.x},
|
||||||
|
{"rates.y", &rates.y},
|
||||||
|
{"rates.z", &rates.z},
|
||||||
|
{"attitude.roll", []() { return attitude.getRoll(); }},
|
||||||
|
{"attitude.pitch", []() { return attitude.getPitch(); }},
|
||||||
|
{"attitude.yaw", []() { return attitude.getYaw(); }}),
|
||||||
|
|
||||||
logPointer++;
|
// rc
|
||||||
if (logPointer >= LOG_SIZE) {
|
LogTopic(10,
|
||||||
logPointer = 0;
|
{"controlTime", &controlTime, false}, // trigger value
|
||||||
|
{"controlRoll", &controlRoll},
|
||||||
|
{"controlPitch", &controlPitch},
|
||||||
|
{"controlYaw", &controlYaw},
|
||||||
|
{"controlThrottle", &controlThrottle}),
|
||||||
|
|
||||||
|
// control
|
||||||
|
LogTopic({"armed", &armed}),
|
||||||
|
LogTopic({"mode", &mode}),
|
||||||
|
|
||||||
|
LogTopic(10,
|
||||||
|
{"ratesTarget.x", &ratesTarget.x},
|
||||||
|
{"ratesTarget.y", &ratesTarget.y},
|
||||||
|
{"ratesTarget.z", &ratesTarget.z},
|
||||||
|
{"attitudeTarget.roll", []() { return attitudeTarget.getRoll(); }},
|
||||||
|
{"attitudeTarget.pitch", []() { return attitudeTarget.getPitch(); }},
|
||||||
|
{"attitudeTarget.yaw", []() { return attitudeTarget.getYaw(); }},
|
||||||
|
{"thrustTarget", &thrustTarget}),
|
||||||
|
|
||||||
|
// motors
|
||||||
|
LogTopic(
|
||||||
|
{"motors[0]", &motors[0]},
|
||||||
|
{"motors[1]", &motors[1]},
|
||||||
|
{"motors[2]", &motors[2]},
|
||||||
|
{"motors[3]", &motors[3]}),
|
||||||
|
|
||||||
|
// misc
|
||||||
|
LogTopic(5,
|
||||||
|
{"voltage", &voltage},
|
||||||
|
{"temp", &temperatureRead},
|
||||||
|
{"imuTemp", []() { return imu.getTemp(); }}),
|
||||||
|
};
|
||||||
|
|
||||||
|
void *logBuffer; // buffer for log data
|
||||||
|
size_t logCapacity;
|
||||||
|
size_t logCursor = 0;
|
||||||
|
size_t logLength = 0;
|
||||||
|
LogValue *logExposed = nullptr; // log values exposed to telemetry
|
||||||
|
|
||||||
|
void setupLog() {
|
||||||
|
print("Setup log\n");
|
||||||
|
|
||||||
|
free(logBuffer); // when reconfiguring
|
||||||
|
logBuffer = nullptr;
|
||||||
|
logCursor = 0;
|
||||||
|
logLength = 0;
|
||||||
|
|
||||||
|
if (logMemory == 0) {
|
||||||
|
logCapacity = ESP.getFreeHeap() * logUsage;
|
||||||
|
logBuffer = (uint8_t *)calloc(logCapacity, 1);
|
||||||
|
} else if (logMemory == 1) {
|
||||||
|
logCapacity = ESP.getFreePsram() * logUsage;
|
||||||
|
logBuffer = (uint8_t *)heap_caps_calloc(logCapacity, 1, MALLOC_CAP_SPIRAM | MALLOC_CAP_8BIT);
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
void printLogHeader() {
|
void loopLog() {
|
||||||
for (int i = 0; i < logColumns; i++) {
|
if (logBuffer == nullptr || !armed) return;
|
||||||
print("%s%s", logEntries[i].name, i < logColumns - 1 ? "," : "\n");
|
|
||||||
}
|
|
||||||
}
|
|
||||||
|
|
||||||
void printLogData() {
|
if (!logLength) resetLog(); // reset state on first log write
|
||||||
for (int i = 0; i < LOG_SIZE; i++) {
|
|
||||||
if (logBuffer[i][0] == 0) continue; // skip empty records
|
static Rate sync(2);
|
||||||
for (int j = 0; j < logColumns; j++) {
|
if (sync) {
|
||||||
print("%g%s", logBuffer[i][j], j < logColumns - 1 ? "," : "\n");
|
const uint8_t marker[] = {0x1A, 0x91, 0x4F, 0xF6, 0x7F};
|
||||||
|
writeLog(&marker, sizeof(marker)); // write sync marker
|
||||||
|
}
|
||||||
|
|
||||||
|
for (uint8_t i = 0; i < sizeof(logTopics) / sizeof(logTopics[0]); i++) {
|
||||||
|
LogTopic& topic = logTopics[i];
|
||||||
|
if (t - topic.lastUpdate < 1 / topic.throttle) continue; // throttle topic
|
||||||
|
if (!isTopicUpdated(i)) continue; // skip if topic was't updated
|
||||||
|
|
||||||
|
topic.lastUpdate = t;
|
||||||
|
writeLog(&i, sizeof(i)); // write topic index
|
||||||
|
|
||||||
|
for (auto& value : topic.values) {
|
||||||
|
if (value.name == nullptr) break;
|
||||||
|
if (!value.logged) continue;
|
||||||
|
value.lastValue = value.value.get();
|
||||||
|
writeLog(&value.lastValue, sizeof(float)); // write value
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
|
void resetLog() {
|
||||||
|
for (auto& topic : logTopics) {
|
||||||
|
topic.lastUpdate = -INFINITY;
|
||||||
|
for (auto& value : topic.values) {
|
||||||
|
value.lastValue = NAN;
|
||||||
|
}
|
||||||
|
}
|
||||||
|
logCursor = 0;
|
||||||
|
logLength = 0;
|
||||||
|
}
|
||||||
|
|
||||||
|
void writeLog(const void *data, size_t size) {
|
||||||
|
size_t first = min(size, logCapacity - logCursor);
|
||||||
|
size_t second = size - first;
|
||||||
|
memcpy(logBuffer + logCursor, data, first);
|
||||||
|
logCursor = (logCursor + first) % logCapacity;
|
||||||
|
if (second > 0) {
|
||||||
|
memcpy(logBuffer + logCursor, data + first, second);
|
||||||
|
logCursor = (logCursor + second) % logCapacity;
|
||||||
|
}
|
||||||
|
logLength = min(logLength + size, logCapacity);
|
||||||
|
}
|
||||||
|
|
||||||
|
void readLog(void *data, size_t position, size_t size) {
|
||||||
|
if (logLength == logCapacity) {
|
||||||
|
position = (logCursor + position) % logCapacity;
|
||||||
|
}
|
||||||
|
size_t first = min(size, logCapacity - position);
|
||||||
|
size_t second = size - first;
|
||||||
|
memcpy(data, logBuffer + position, first);
|
||||||
|
if (second > 0) {
|
||||||
|
memcpy(data + first, logBuffer, second);
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|
||||||
|
bool isTopicUpdated(const uint8_t topic) {
|
||||||
|
LogTopic& logTopic = logTopics[topic];
|
||||||
|
bool updated = false;
|
||||||
|
|
||||||
|
for (auto& value : logTopic.values) {
|
||||||
|
if (value.name == nullptr) break;
|
||||||
|
float v = value.value.get();
|
||||||
|
if (!floatEquals(value.lastValue, v)) {
|
||||||
|
value.lastValue = v;
|
||||||
|
updated = true;
|
||||||
|
}
|
||||||
|
}
|
||||||
|
return updated;
|
||||||
|
}
|
||||||
|
|
||||||
|
void printLogInfo() {
|
||||||
|
if (logMemory == -1) return print("Log: disabled\n");
|
||||||
|
|
||||||
|
print("Memory: %s\n", logMemory == 0 ? "RAM" : "PSRAM");
|
||||||
|
print("Usage: %.f%%\n", logUsage * 100);
|
||||||
|
print("Capacity: %u bytes\n", (unsigned)logCapacity);
|
||||||
|
print("Used: %u bytes\n", (unsigned)logLength);
|
||||||
|
print("Estimated duration: %d seconds\n", estimateLogDuration());
|
||||||
|
}
|
||||||
|
|
||||||
|
int estimateLogDuration() {
|
||||||
|
float bandwidth = 0;
|
||||||
|
for (LogTopic& topic : logTopics) {
|
||||||
|
float rate = isinf(topic.throttle) ? loopRate : topic.throttle;
|
||||||
|
bandwidth += rate * topic.length * sizeof(float);
|
||||||
|
}
|
||||||
|
return logCapacity / bandwidth;
|
||||||
|
}
|
||||||
|
|
||||||
|
void printLogHeader() {
|
||||||
|
int i = 0;
|
||||||
|
for (auto& topic : logTopics) {
|
||||||
|
print("Topic #%d (%g Hz):\n", i++, topic.throttle);
|
||||||
|
for (auto& value : topic.values) {
|
||||||
|
if (value.name == nullptr) break;
|
||||||
|
print(" %s%s\n", value.name, value.logged ?"" : " (not logged)");
|
||||||
|
}
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|
||||||
|
void printLogValues(const char *filter) {
|
||||||
|
for (LogTopic& topic : logTopics) {
|
||||||
|
for (LogValue& value : topic.values) {
|
||||||
|
if (value.name == nullptr) break;
|
||||||
|
if (strncasecmp(value.name, filter, strlen(filter))) continue;
|
||||||
|
print("%s = %g\n", value.name, value.value.get());
|
||||||
|
}
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|
||||||
|
void configLogThrottle(const char *name, float throttle) {
|
||||||
|
for (LogTopic& topic : logTopics) {
|
||||||
|
for (LogValue& value : topic.values) {
|
||||||
|
if (value.name == nullptr) break;
|
||||||
|
if (strcasecmp(value.name, name) != 0) continue;
|
||||||
|
topic.throttle = throttle;
|
||||||
|
print("Log throttle for %s set to %.1f Hz\n", name, throttle);
|
||||||
|
return;
|
||||||
|
}
|
||||||
|
}
|
||||||
|
print("Log value not found: %s\n", name);
|
||||||
|
}
|
||||||
|
|
||||||
|
void exposeLogValue(const char *name) {
|
||||||
|
for (int i = 0; i < sizeof(logTopics) / sizeof(logTopics[0]); i++) {
|
||||||
|
LogTopic& topic = logTopics[i];
|
||||||
|
for (LogValue& value : topic.values) {
|
||||||
|
if (value.name == nullptr) break;
|
||||||
|
if (strcasecmp(value.name, name) != 0) continue;
|
||||||
|
logExposed = &value;
|
||||||
|
print("Log value %s exposed\n", name);
|
||||||
|
return;
|
||||||
|
}
|
||||||
|
}
|
||||||
|
print("Log value not found: %s\n", name);
|
||||||
|
}
|
||||||
|
|||||||
@@ -1,27 +0,0 @@
|
|||||||
// Copyright (c) 2023 Oleg Kalachev <okalachev@gmail.com>
|
|
||||||
// Repository: https://github.com/okalachev/flix
|
|
||||||
|
|
||||||
// Low pass filter implementation
|
|
||||||
|
|
||||||
#pragma once
|
|
||||||
|
|
||||||
template <typename T> // Using template to make the filter usable for scalar and vector values
|
|
||||||
class LowPassFilter {
|
|
||||||
public:
|
|
||||||
float alpha; // smoothing constant, 1 means filter disabled
|
|
||||||
T output;
|
|
||||||
|
|
||||||
LowPassFilter(float alpha): alpha(alpha) {};
|
|
||||||
|
|
||||||
T update(const T input) {
|
|
||||||
return output += alpha * (input - output);
|
|
||||||
}
|
|
||||||
|
|
||||||
void setCutOffFrequency(float cutOffFreq, float dt) {
|
|
||||||
alpha = 1 - exp(-2 * PI * cutOffFreq * dt);
|
|
||||||
}
|
|
||||||
|
|
||||||
void reset() {
|
|
||||||
output = T(); // set to zero
|
|
||||||
}
|
|
||||||
};
|
|
||||||
@@ -10,8 +10,13 @@ extern float controlTime;
|
|||||||
extern float voltage;
|
extern float voltage;
|
||||||
|
|
||||||
int mavlinkSysId = 1;
|
int mavlinkSysId = 1;
|
||||||
Rate telemetryFast(10);
|
|
||||||
Rate telemetrySlow(2);
|
Rate telemetrySlow(2);
|
||||||
|
Rate telemetryAttitude(20);
|
||||||
|
Rate telemetryRC(10);
|
||||||
|
Rate telemetryMotors(10);
|
||||||
|
Rate telemetryIMU(15);
|
||||||
|
Rate telemetryTopic(10);
|
||||||
|
|
||||||
bool mavlinkConnected = false;
|
bool mavlinkConnected = false;
|
||||||
String mavlinkPrintBuffer;
|
String mavlinkPrintBuffer;
|
||||||
@@ -34,14 +39,18 @@ void sendMavlink() {
|
|||||||
((mode == AUTO) ? MAV_MODE_FLAG_AUTO_ENABLED : MAV_MODE_FLAG_MANUAL_INPUT_ENABLED),
|
((mode == AUTO) ? MAV_MODE_FLAG_AUTO_ENABLED : MAV_MODE_FLAG_MANUAL_INPUT_ENABLED),
|
||||||
mode, MAV_STATE_STANDBY);
|
mode, MAV_STATE_STANDBY);
|
||||||
sendMessage(&msg);
|
sendMessage(&msg);
|
||||||
|
}
|
||||||
|
|
||||||
if (!mavlinkConnected) return; // send only heartbeat until connected
|
if (!mavlinkConnected) return; // send only heartbeat until connected
|
||||||
|
|
||||||
|
if (telemetrySlow) {
|
||||||
mavlink_msg_extended_sys_state_pack(mavlinkSysId, MAV_COMP_ID_AUTOPILOT1, &msg,
|
mavlink_msg_extended_sys_state_pack(mavlinkSysId, MAV_COMP_ID_AUTOPILOT1, &msg,
|
||||||
MAV_VTOL_STATE_UNDEFINED, landed ? MAV_LANDED_STATE_ON_GROUND : MAV_LANDED_STATE_IN_AIR);
|
MAV_VTOL_STATE_UNDEFINED, landed ? MAV_LANDED_STATE_ON_GROUND : MAV_LANDED_STATE_IN_AIR);
|
||||||
sendMessage(&msg);
|
sendMessage(&msg);
|
||||||
|
}
|
||||||
|
|
||||||
uint16_t voltages[] = {voltage * 1000, UINT16_MAX, UINT16_MAX, UINT16_MAX, UINT16_MAX, UINT16_MAX, UINT16_MAX, UINT16_MAX, UINT16_MAX, UINT16_MAX};
|
if (telemetrySlow && valid(voltage)) {
|
||||||
|
uint16_t voltages[] = {(uint16_t)(voltage * 1000), UINT16_MAX, UINT16_MAX, UINT16_MAX, UINT16_MAX, UINT16_MAX, UINT16_MAX, UINT16_MAX, UINT16_MAX, UINT16_MAX};
|
||||||
uint16_t voltagesExt[] = {0, 0, 0, 0};
|
uint16_t voltagesExt[] = {0, 0, 0, 0};
|
||||||
float remaining = constrain(mapf(voltage, 3.4, 4.2, 0, 1), 0, 1);
|
float remaining = constrain(mapf(voltage, 3.4, 4.2, 0, 1), 0, 1);
|
||||||
mavlink_msg_battery_status_pack(mavlinkSysId, MAV_COMP_ID_AUTOPILOT1, &msg, 0, MAV_BATTERY_FUNCTION_ALL,
|
mavlink_msg_battery_status_pack(mavlinkSysId, MAV_COMP_ID_AUTOPILOT1, &msg, 0, MAV_BATTERY_FUNCTION_ALL,
|
||||||
@@ -49,27 +58,39 @@ void sendMavlink() {
|
|||||||
sendMessage(&msg);
|
sendMessage(&msg);
|
||||||
}
|
}
|
||||||
|
|
||||||
if (telemetryFast && mavlinkConnected) {
|
if (telemetryAttitude) {
|
||||||
const float offset[] = {0, 0, 0, 0};
|
const float offset[] = {0, 0, 0, 0};
|
||||||
mavlink_msg_attitude_quaternion_pack(mavlinkSysId, MAV_COMP_ID_AUTOPILOT1, &msg,
|
mavlink_msg_attitude_quaternion_pack(mavlinkSysId, MAV_COMP_ID_AUTOPILOT1, &msg,
|
||||||
time, attitude.w, attitude.x, -attitude.y, -attitude.z, rates.x, -rates.y, -rates.z, offset); // convert to frd
|
time, attitude.w, attitude.x, -attitude.y, -attitude.z, rates.x, -rates.y, -rates.z, offset); // convert to frd
|
||||||
sendMessage(&msg);
|
sendMessage(&msg);
|
||||||
|
}
|
||||||
|
|
||||||
|
if (telemetryRC && channels[0]) { // 0 means no RC input
|
||||||
mavlink_msg_rc_channels_raw_pack(mavlinkSysId, MAV_COMP_ID_AUTOPILOT1, &msg, controlTime * 1000, 0,
|
mavlink_msg_rc_channels_raw_pack(mavlinkSysId, MAV_COMP_ID_AUTOPILOT1, &msg, controlTime * 1000, 0,
|
||||||
channels[0], channels[1], channels[2], channels[3], channels[4], channels[5], channels[6], channels[7], UINT8_MAX);
|
channels[0], channels[1], channels[2], channels[3], channels[4], channels[5], channels[6], channels[7], UINT8_MAX);
|
||||||
if (channels[0] != 0) sendMessage(&msg); // 0 means no RC input
|
sendMessage(&msg);
|
||||||
|
}
|
||||||
|
|
||||||
|
if (telemetryMotors) {
|
||||||
float controls[8];
|
float controls[8];
|
||||||
memcpy(controls, motors, sizeof(motors));
|
memcpy(controls, motors, sizeof(motors));
|
||||||
mavlink_msg_actuator_control_target_pack(mavlinkSysId, MAV_COMP_ID_AUTOPILOT1, &msg, time, 0, controls);
|
mavlink_msg_actuator_control_target_pack(mavlinkSysId, MAV_COMP_ID_AUTOPILOT1, &msg, time, 0, controls);
|
||||||
sendMessage(&msg);
|
sendMessage(&msg);
|
||||||
|
}
|
||||||
|
|
||||||
|
if (telemetryIMU) {
|
||||||
mavlink_msg_scaled_imu_pack(mavlinkSysId, MAV_COMP_ID_AUTOPILOT1, &msg, time,
|
mavlink_msg_scaled_imu_pack(mavlinkSysId, MAV_COMP_ID_AUTOPILOT1, &msg, time,
|
||||||
acc.x / ONE_G * 1000, -acc.y / ONE_G * 1000, -acc.z / ONE_G * 1000, // convert to frd
|
acc.x / ONE_G * 1000, -acc.y / ONE_G * 1000, -acc.z / ONE_G * 1000, // convert to frd
|
||||||
gyro.x * 1000, -gyro.y * 1000, -gyro.z * 1000,
|
gyro.x * 1000, -gyro.y * 1000, -gyro.z * 1000,
|
||||||
0, 0, 0, 0);
|
0, 0, 0, 0);
|
||||||
sendMessage(&msg);
|
sendMessage(&msg);
|
||||||
}
|
}
|
||||||
|
|
||||||
|
if (telemetryTopic && logExposed != nullptr) {
|
||||||
|
mavlink_msg_named_value_float_pack(mavlinkSysId, MAV_COMP_ID_AUTOPILOT1, &msg,
|
||||||
|
time, logExposed->name, logExposed->value.get());
|
||||||
|
sendMessage(&msg);
|
||||||
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
void sendMessage(const void *msg) {
|
void sendMessage(const void *msg) {
|
||||||
@@ -78,16 +99,36 @@ void sendMessage(const void *msg) {
|
|||||||
sendWiFi(buf, len);
|
sendWiFi(buf, len);
|
||||||
}
|
}
|
||||||
|
|
||||||
|
static uint8_t mavlinkBatch[ESP_NOW_MAX_DATA_LEN_V2];
|
||||||
|
static int mavlinkBatchSize = 0;
|
||||||
|
|
||||||
|
void batchMessage(const void *msg) {
|
||||||
|
uint8_t buf[MAVLINK_MAX_PACKET_LEN];
|
||||||
|
int len = mavlink_msg_to_send_buffer(buf, (mavlink_message_t *)msg);
|
||||||
|
|
||||||
|
if (mavlinkBatchSize + len > sizeof(mavlinkBatch)) {
|
||||||
|
sendWiFi(mavlinkBatch, mavlinkBatchSize);
|
||||||
|
mavlinkBatchSize = 0;
|
||||||
|
}
|
||||||
|
memcpy(mavlinkBatch + mavlinkBatchSize, buf, len);
|
||||||
|
mavlinkBatchSize += len;
|
||||||
|
}
|
||||||
|
|
||||||
|
void flushBatchMessages() {
|
||||||
|
sendWiFi(mavlinkBatch, mavlinkBatchSize);
|
||||||
|
mavlinkBatchSize = 0;
|
||||||
|
}
|
||||||
|
|
||||||
void receiveMavlink() {
|
void receiveMavlink() {
|
||||||
uint8_t buf[MAVLINK_MAX_PACKET_LEN];
|
uint8_t buf[MAVLINK_MAX_PACKET_LEN];
|
||||||
int len = receiveWiFi(buf, MAVLINK_MAX_PACKET_LEN);
|
int len = receiveWiFi(buf, MAVLINK_MAX_PACKET_LEN);
|
||||||
if (len) mavlinkConnected = true;
|
|
||||||
|
|
||||||
// New packet, parse it
|
// New packet, parse it
|
||||||
mavlink_message_t msg;
|
mavlink_message_t msg;
|
||||||
mavlink_status_t status;
|
mavlink_status_t status;
|
||||||
for (int i = 0; i < len; i++) {
|
for (int i = 0; i < len; i++) {
|
||||||
if (mavlink_parse_char(MAVLINK_COMM_0, buf[i], &msg, &status)) {
|
if (mavlink_parse_char(MAVLINK_COMM_0, buf[i], &msg, &status)) {
|
||||||
|
mavlinkConnected = true;
|
||||||
handleMavlink(&msg);
|
handleMavlink(&msg);
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
@@ -182,18 +223,24 @@ void handleMavlink(const void *_msg) {
|
|||||||
mavlink_msg_set_attitude_target_decode(&msg, &m);
|
mavlink_msg_set_attitude_target_decode(&msg, &m);
|
||||||
if (m.target_system && m.target_system != mavlinkSysId) return;
|
if (m.target_system && m.target_system != mavlinkSysId) return;
|
||||||
|
|
||||||
// copy attitude, rates and thrust targets
|
if (!(m.type_mask & ATTITUDE_TARGET_TYPEMASK_ATTITUDE_IGNORE)) {
|
||||||
ratesTarget.x = m.body_roll_rate;
|
// Attitude control
|
||||||
ratesTarget.y = -m.body_pitch_rate; // convert to flu
|
attitudeTarget.w = m.q[0];
|
||||||
ratesTarget.z = -m.body_yaw_rate;
|
attitudeTarget.x = m.q[1];
|
||||||
attitudeTarget.w = m.q[0];
|
attitudeTarget.y = -m.q[2];
|
||||||
attitudeTarget.x = m.q[1];
|
attitudeTarget.z = -m.q[3];
|
||||||
attitudeTarget.y = -m.q[2];
|
ratesExtra.x = m.type_mask & ATTITUDE_TARGET_TYPEMASK_BODY_ROLL_RATE_IGNORE ? 0 : m.body_roll_rate;
|
||||||
attitudeTarget.z = -m.q[3];
|
ratesExtra.y = m.type_mask & ATTITUDE_TARGET_TYPEMASK_BODY_PITCH_RATE_IGNORE ? 0 : -m.body_pitch_rate; // convert to flu
|
||||||
thrustTarget = m.thrust;
|
ratesExtra.z = m.type_mask & ATTITUDE_TARGET_TYPEMASK_BODY_YAW_RATE_IGNORE ? 0 : -m.body_yaw_rate;
|
||||||
ratesExtra = Vector(0, 0, 0);
|
} else {
|
||||||
|
// Rates control
|
||||||
|
attitudeTarget.invalidate();
|
||||||
|
ratesTarget.x = m.type_mask & ATTITUDE_TARGET_TYPEMASK_BODY_ROLL_RATE_IGNORE ? ratesTarget.x : m.body_roll_rate;
|
||||||
|
ratesTarget.y = m.type_mask & ATTITUDE_TARGET_TYPEMASK_BODY_PITCH_RATE_IGNORE ? ratesTarget.y : -m.body_pitch_rate;
|
||||||
|
ratesTarget.z = m.type_mask & ATTITUDE_TARGET_TYPEMASK_BODY_YAW_RATE_IGNORE ? ratesTarget.z : -m.body_yaw_rate;
|
||||||
|
}
|
||||||
|
|
||||||
if (m.type_mask & ATTITUDE_TARGET_TYPEMASK_ATTITUDE_IGNORE) attitudeTarget.invalidate();
|
thrustTarget = valid(m.thrust) ? m.thrust : thrustTarget;
|
||||||
armed = m.thrust > 0;
|
armed = m.thrust > 0;
|
||||||
}
|
}
|
||||||
|
|
||||||
@@ -211,18 +258,29 @@ void handleMavlink(const void *_msg) {
|
|||||||
armed = motors[0] > 0 || motors[1] > 0 || motors[2] > 0 || motors[3] > 0;
|
armed = motors[0] > 0 || motors[1] > 0 || motors[2] > 0 || motors[3] > 0;
|
||||||
}
|
}
|
||||||
|
|
||||||
|
if (msg.msgid == MAVLINK_MSG_ID_LOG_REQUEST_LIST) {
|
||||||
|
const uint32_t qgcEpoch = 1262304000; // qgc accepts only timestamps after 2010-01-01
|
||||||
|
mavlink_message_t response;
|
||||||
|
mavlink_msg_log_entry_pack(mavlinkSysId, MAV_COMP_ID_AUTOPILOT1, &response,
|
||||||
|
0, 1, 0, qgcEpoch + t * 60, logLength); // put fake unique date to make qgc happy with saving logs
|
||||||
|
sendMessage(&response);
|
||||||
|
}
|
||||||
|
|
||||||
if (msg.msgid == MAVLINK_MSG_ID_LOG_REQUEST_DATA) {
|
if (msg.msgid == MAVLINK_MSG_ID_LOG_REQUEST_DATA) {
|
||||||
mavlink_log_request_data_t m;
|
mavlink_log_request_data_t m;
|
||||||
mavlink_msg_log_request_data_decode(&msg, &m);
|
mavlink_msg_log_request_data_decode(&msg, &m);
|
||||||
if (m.target_system && m.target_system != mavlinkSysId) return;
|
if (m.target_system && m.target_system != mavlinkSysId) return;
|
||||||
|
|
||||||
// Send all log records
|
for (int i = 0; i < m.count; i += MAVLINK_MSG_LOG_DATA_FIELD_DATA_LEN) {
|
||||||
for (int i = 0; i < sizeof(logBuffer) / sizeof(logBuffer[0]); i++) {
|
int chunkSize = min(MAVLINK_MSG_LOG_DATA_FIELD_DATA_LEN, (int)(m.count - i));
|
||||||
mavlink_message_t msg;
|
mavlink_message_t response;
|
||||||
mavlink_msg_log_data_pack(mavlinkSysId, MAV_COMP_ID_AUTOPILOT1, &msg, 0, i,
|
uint8_t data[MAVLINK_MSG_LOG_DATA_FIELD_DATA_LEN];
|
||||||
sizeof(logBuffer[0]), (uint8_t *)logBuffer[i]);
|
readLog(data, m.ofs + i, chunkSize);
|
||||||
sendMessage(&msg);
|
mavlink_msg_log_data_pack(mavlinkSysId, MAV_COMP_ID_AUTOPILOT1, &response,
|
||||||
|
m.id, m.ofs + i, chunkSize, data);
|
||||||
|
batchMessage(&response);
|
||||||
}
|
}
|
||||||
|
flushBatchMessages();
|
||||||
}
|
}
|
||||||
|
|
||||||
// Handle commands
|
// Handle commands
|
||||||
@@ -241,7 +299,7 @@ void handleMavlink(const void *_msg) {
|
|||||||
}
|
}
|
||||||
|
|
||||||
if (m.command == MAV_CMD_COMPONENT_ARM_DISARM) {
|
if (m.command == MAV_CMD_COMPONENT_ARM_DISARM) {
|
||||||
if (m.param1 && controlThrottle > 0.05) return; // don't arm if throttle is not low
|
if (m.param1 == 1 && controlThrottle > 0.05) return; // don't arm if throttle is not low
|
||||||
accepted = true;
|
accepted = true;
|
||||||
armed = m.param1 == 1;
|
armed = m.param1 == 1;
|
||||||
}
|
}
|
||||||
|
|||||||
@@ -7,37 +7,36 @@
|
|||||||
|
|
||||||
float motors[4]; // normalized motor thrusts in range [0..1]
|
float motors[4]; // normalized motor thrusts in range [0..1]
|
||||||
|
|
||||||
int motorPins[4] = {12, 13, 14, 15}; // default pin numbers
|
int motorPins[4] = {-1, -1, -1, -1}; // default pin numbers
|
||||||
int pwmFrequency = 78000;
|
int pwmFrequency = 78000;
|
||||||
int pwmResolution = 10;
|
int pwmResolution = 10;
|
||||||
int pwmStop = 0;
|
int pwmStop = 0;
|
||||||
int pwmMin = 0;
|
int pwmMin = 0;
|
||||||
int pwmMax = -1; // -1 means duty cycle mode
|
int pwmMax = -1; // -1 means duty cycle mode
|
||||||
|
|
||||||
const int MOTOR_REAR_LEFT = 0;
|
const int MOTOR_REAR_LEFT = 0, MOTOR_REAR_RIGHT = 1, MOTOR_FRONT_RIGHT = 2, MOTOR_FRONT_LEFT = 3;
|
||||||
const int MOTOR_REAR_RIGHT = 1;
|
|
||||||
const int MOTOR_FRONT_RIGHT = 2;
|
|
||||||
const int MOTOR_FRONT_LEFT = 3;
|
|
||||||
|
|
||||||
void setupMotors() {
|
void setupMotors() {
|
||||||
print("Setup Motors\n");
|
print("Setup motors\n");
|
||||||
// configure pins
|
// Configure pins
|
||||||
for (int i = 0; i < 4; i++) {
|
for (int i = 0; i < 4; i++) {
|
||||||
|
if (motorPins[i] < 0) continue; // skip unassigned motors
|
||||||
ledcAttach(motorPins[i], pwmFrequency, pwmResolution);
|
ledcAttach(motorPins[i], pwmFrequency, pwmResolution);
|
||||||
pwmFrequency = ledcChangeFrequency(motorPins[i], pwmFrequency, pwmResolution); // when reconfiguring
|
pwmFrequency = ledcChangeFrequency(motorPins[i], pwmFrequency, pwmResolution); // when reconfiguring
|
||||||
}
|
}
|
||||||
sendMotors();
|
sendMotors();
|
||||||
print("Motors initialized\n");
|
|
||||||
}
|
}
|
||||||
|
|
||||||
void sendMotors() {
|
void sendMotors() {
|
||||||
for (int i = 0; i < 4; i++) {
|
for (int i = 0; i < 4; i++) {
|
||||||
|
if (motorPins[i] < 0) continue; // skip unassigned motors
|
||||||
ledcWrite(motorPins[i], getDutyCycle(motors[i]));
|
ledcWrite(motorPins[i], getDutyCycle(motors[i]));
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
int getDutyCycle(float value) {
|
int getDutyCycle(float value) {
|
||||||
value = constrain(value, 0, 1);
|
value = constrain(value, 0, 1);
|
||||||
|
|
||||||
if (pwmMax >= 0) { // pwm mode
|
if (pwmMax >= 0) { // pwm mode
|
||||||
float pwm = mapf(value, 0, 1, pwmMin, pwmMax);
|
float pwm = mapf(value, 0, 1, pwmMin, pwmMax);
|
||||||
if (value == 0) pwm = pwmStop;
|
if (value == 0) pwm = pwmStop;
|
||||||
@@ -52,9 +51,9 @@ bool motorsActive() {
|
|||||||
return motors[0] != 0 || motors[1] != 0 || motors[2] != 0 || motors[3] != 0;
|
return motors[0] != 0 || motors[1] != 0 || motors[2] != 0 || motors[3] != 0;
|
||||||
}
|
}
|
||||||
|
|
||||||
void testMotor(int n) {
|
void testMotor(int n, float thrust) {
|
||||||
print("Testing motor %d\n", n);
|
print("Testing motor %d\n", n);
|
||||||
motors[n] = 0.2;
|
motors[n] = thrust;
|
||||||
delay(50); // ESP32 may need to wait until the end of the current cycle to change duty https://github.com/espressif/arduino-esp32/issues/5306
|
delay(50); // ESP32 may need to wait until the end of the current cycle to change duty https://github.com/espressif/arduino-esp32/issues/5306
|
||||||
sendMotors();
|
sendMotors();
|
||||||
pause(3);
|
pause(3);
|
||||||
|
|||||||
@@ -6,13 +6,11 @@
|
|||||||
#include <Preferences.h>
|
#include <Preferences.h>
|
||||||
#include "util.h"
|
#include "util.h"
|
||||||
|
|
||||||
extern int channelZero[16];
|
extern int channelZero[16], channelMax[16];
|
||||||
extern int channelMax[16];
|
|
||||||
extern int rollChannel, pitchChannel, throttleChannel, yawChannel, armedChannel, modeChannel;
|
extern int rollChannel, pitchChannel, throttleChannel, yawChannel, armedChannel, modeChannel;
|
||||||
extern int rcRxPin;
|
extern int rcRxPin, voltagePin;
|
||||||
extern int wifiMode, udpLocalPort, udpRemotePort;
|
extern int wifiMode, wifiLongRange, udpLocalPort, udpRemotePort, espnowChannel;
|
||||||
extern float rcLossTimeout, descendTime;
|
extern float rcLossTimeout, descendTime, disarmTilt;
|
||||||
extern int voltagePin;
|
|
||||||
extern float voltageScale;
|
extern float voltageScale;
|
||||||
extern LowPassFilter<float> voltageFilter;
|
extern LowPassFilter<float> voltageFilter;
|
||||||
|
|
||||||
@@ -22,6 +20,7 @@ struct Parameter {
|
|||||||
const char *name; // max length is 15
|
const char *name; // max length is 15
|
||||||
bool integer;
|
bool integer;
|
||||||
union { float *f; int *i; }; // pointer to the variable
|
union { float *f; int *i; }; // pointer to the variable
|
||||||
|
float inital; // default value
|
||||||
float cache; // what's stored in flash
|
float cache; // what's stored in flash
|
||||||
void (*callback)(); // called after parameter change
|
void (*callback)(); // called after parameter change
|
||||||
Parameter(const char *name, float *variable, void (*callback)() = nullptr) : name(name), integer(false), f(variable), callback(callback) {};
|
Parameter(const char *name, float *variable, void (*callback)() = nullptr) : name(name), integer(false), f(variable), callback(callback) {};
|
||||||
@@ -75,6 +74,8 @@ Parameter parameters[] = {
|
|||||||
{"EST_ACC_WEIGHT", &accWeight},
|
{"EST_ACC_WEIGHT", &accWeight},
|
||||||
{"EST_LVL_WEIGHT", &levelWeight},
|
{"EST_LVL_WEIGHT", &levelWeight},
|
||||||
{"EST_RATES_LPF_A", &ratesFilter.alpha},
|
{"EST_RATES_LPF_A", &ratesFilter.alpha},
|
||||||
|
{"EST_RATES_NF_F", &ratesNotch.frequency, setupEstimate},
|
||||||
|
{"EST_RATES_NF_BW", &ratesNotch.bandwidth, setupEstimate},
|
||||||
// motors
|
// motors
|
||||||
{"MOT_PIN_FL", &motorPins[MOTOR_FRONT_LEFT], setupMotors},
|
{"MOT_PIN_FL", &motorPins[MOTOR_FRONT_LEFT], setupMotors},
|
||||||
{"MOT_PIN_FR", &motorPins[MOTOR_FRONT_RIGHT], setupMotors},
|
{"MOT_PIN_FR", &motorPins[MOTOR_FRONT_RIGHT], setupMotors},
|
||||||
@@ -86,7 +87,7 @@ Parameter parameters[] = {
|
|||||||
{"MOT_PWM_MIN", &pwmMin},
|
{"MOT_PWM_MIN", &pwmMin},
|
||||||
{"MOT_PWM_MAX", &pwmMax},
|
{"MOT_PWM_MAX", &pwmMax},
|
||||||
// rc
|
// rc
|
||||||
{"RC_RX_PIN", &rcRxPin},
|
{"RC_RX_PIN", &rcRxPin, setupRC},
|
||||||
{"RC_ZERO_0", &channelZero[0]},
|
{"RC_ZERO_0", &channelZero[0]},
|
||||||
{"RC_ZERO_1", &channelZero[1]},
|
{"RC_ZERO_1", &channelZero[1]},
|
||||||
{"RC_ZERO_2", &channelZero[2]},
|
{"RC_ZERO_2", &channelZero[2]},
|
||||||
@@ -112,17 +113,40 @@ Parameter parameters[] = {
|
|||||||
{"WIFI_MODE", &wifiMode},
|
{"WIFI_MODE", &wifiMode},
|
||||||
{"WIFI_PORT_LOC", &udpLocalPort},
|
{"WIFI_PORT_LOC", &udpLocalPort},
|
||||||
{"WIFI_PORT_REM", &udpRemotePort},
|
{"WIFI_PORT_REM", &udpRemotePort},
|
||||||
|
{"WIFI_LONG_RANGE", &wifiLongRange},
|
||||||
|
// espnow
|
||||||
|
{"ESPNOW_CHANNEL", &espnowChannel},
|
||||||
// mavlink
|
// mavlink
|
||||||
{"MAV_SYS_ID", &mavlinkSysId},
|
{"MAV_SYS_ID", &mavlinkSysId},
|
||||||
{"MAV_RATE_SLOW", &telemetrySlow.rate},
|
{"MAV_RATE_SLOW", &telemetrySlow.rate},
|
||||||
{"MAV_RATE_FAST", &telemetryFast.rate},
|
{"MAV_RATE_ATT", &telemetryAttitude.rate},
|
||||||
|
{"MAV_RATE_RC", &telemetryRC.rate},
|
||||||
|
{"MAV_RATE_MOT", &telemetryMotors.rate},
|
||||||
|
{"MAV_RATE_IMU", &telemetryIMU.rate},
|
||||||
|
{"MAV_RATE_TOPIC", &telemetryTopic.rate},
|
||||||
|
// log
|
||||||
|
{"LOG_MEMORY", &logMemory, setupLog},
|
||||||
|
{"LOG_USAGE", &logUsage, setupLog},
|
||||||
|
{"LOG_RATE_000", &logTopics[0].throttle},
|
||||||
|
{"LOG_RATE_001", &logTopics[1].throttle},
|
||||||
|
{"LOG_RATE_002", &logTopics[2].throttle},
|
||||||
|
{"LOG_RATE_003", &logTopics[3].throttle},
|
||||||
|
{"LOG_RATE_004", &logTopics[4].throttle},
|
||||||
|
{"LOG_RATE_005", &logTopics[5].throttle},
|
||||||
|
{"LOG_RATE_006", &logTopics[6].throttle},
|
||||||
|
{"LOG_RATE_007", &logTopics[7].throttle},
|
||||||
|
{"LOG_RATE_008", &logTopics[8].throttle},
|
||||||
|
{"LOG_RATE_009", &logTopics[9].throttle},
|
||||||
|
{"LOG_RATE_010", &logTopics[10].throttle},
|
||||||
|
{"LOG_RATE_011", &logTopics[11].throttle},
|
||||||
// power
|
// power
|
||||||
{"PWR_VOLT_PIN", &voltagePin},
|
{"PWR_VOLT_PIN", &voltagePin, setupPower},
|
||||||
{"PWR_VOLT_SCALE", &voltageScale},
|
{"PWR_VOLT_SCALE", &voltageScale},
|
||||||
{"PWR_VOLT_LPF_A", &voltageFilter.alpha},
|
{"PWR_VOLT_LPF_A", &voltageFilter.alpha},
|
||||||
// safety
|
// safety
|
||||||
{"SF_RC_LOSS_TIME", &rcLossTimeout},
|
{"SF_RC_LOSS_TIME", &rcLossTimeout},
|
||||||
{"SF_DESCEND_TIME", &descendTime},
|
{"SF_DESCEND_TIME", &descendTime},
|
||||||
|
{"SF_DISARM_TILT", &disarmTilt}
|
||||||
};
|
};
|
||||||
|
|
||||||
void setupParameters() {
|
void setupParameters() {
|
||||||
@@ -130,10 +154,10 @@ void setupParameters() {
|
|||||||
storage.begin("flix");
|
storage.begin("flix");
|
||||||
// Read parameters from storage
|
// Read parameters from storage
|
||||||
for (auto ¶meter : parameters) {
|
for (auto ¶meter : parameters) {
|
||||||
if (!storage.isKey(parameter.name)) {
|
parameter.inital = parameter.getValue();
|
||||||
storage.putFloat(parameter.name, parameter.getValue()); // store default value
|
if (storage.isKey(parameter.name)) {
|
||||||
|
parameter.setValue(storage.getFloat(parameter.name));
|
||||||
}
|
}
|
||||||
parameter.setValue(storage.getFloat(parameter.name, 0));
|
|
||||||
parameter.cache = parameter.getValue();
|
parameter.cache = parameter.getValue();
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
@@ -179,17 +203,23 @@ void syncParameters() {
|
|||||||
if (motorsActive()) return; // don't use flash while flying, it may cause a delay
|
if (motorsActive()) return; // don't use flash while flying, it may cause a delay
|
||||||
|
|
||||||
for (auto ¶meter : parameters) {
|
for (auto ¶meter : parameters) {
|
||||||
if (parameter.getValue() == parameter.cache) continue; // no change
|
if (floatEquals(parameter.getValue(), parameter.cache)) continue; // no change
|
||||||
if (isnan(parameter.getValue()) && isnan(parameter.cache)) continue; // both are NAN
|
|
||||||
|
|
||||||
storage.putFloat(parameter.name, parameter.getValue());
|
storage.putFloat(parameter.name, parameter.getValue());
|
||||||
parameter.cache = parameter.getValue(); // update cache
|
parameter.cache = parameter.getValue(); // update cache
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
void printParameters() {
|
void printParameters(const char *filter) {
|
||||||
|
print("Name Value [Default]\n");
|
||||||
for (auto ¶meter : parameters) {
|
for (auto ¶meter : parameters) {
|
||||||
print("%s = %g\n", parameter.name, parameter.getValue());
|
if (strncasecmp(parameter.name, filter, strlen(filter))) continue;
|
||||||
|
|
||||||
|
if (floatEquals(parameter.getValue(), parameter.inital)) { // parameter changed
|
||||||
|
print("%-15s %-13g\n", parameter.name, parameter.getValue());
|
||||||
|
} else {
|
||||||
|
print("%-15s %-13g [%g]\n", parameter.name, parameter.getValue(), parameter.inital);
|
||||||
|
}
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
|
|||||||
@@ -5,7 +5,7 @@
|
|||||||
|
|
||||||
#pragma once
|
#pragma once
|
||||||
|
|
||||||
#include "lpf.h"
|
#include "filter.h"
|
||||||
|
|
||||||
class PID {
|
class PID {
|
||||||
public:
|
public:
|
||||||
|
|||||||
@@ -5,21 +5,22 @@
|
|||||||
|
|
||||||
#include <soc/soc.h>
|
#include <soc/soc.h>
|
||||||
#include <soc/rtc_cntl_reg.h>
|
#include <soc/rtc_cntl_reg.h>
|
||||||
#include "lpf.h"
|
#include "filter.h"
|
||||||
#include "util.h"
|
#include "util.h"
|
||||||
|
|
||||||
float voltage;
|
float voltage = NAN;
|
||||||
LowPassFilter<float> voltageFilter(0.2);
|
LowPassFilter<float> voltageFilter(1);
|
||||||
int voltagePin = -1;
|
int voltagePin = -1;
|
||||||
float voltageScale = 2;
|
float voltageScale = 2;
|
||||||
|
|
||||||
void setupPower() {
|
void setupPower() {
|
||||||
// Disable reset on low voltage
|
REG_CLR_BIT(RTC_CNTL_BROWN_OUT_REG, RTC_CNTL_BROWN_OUT_ENA); // disable reset on low voltage
|
||||||
REG_CLR_BIT(RTC_CNTL_BROWN_OUT_REG, RTC_CNTL_BROWN_OUT_ENA);
|
if (digitalPinToAnalogChannel(voltagePin) == -1) voltagePin = -1; // test ADC pin
|
||||||
}
|
}
|
||||||
|
|
||||||
void readVoltage() {
|
void readVoltage() {
|
||||||
if (voltagePin < 0) return;
|
if (voltagePin < 0) return;
|
||||||
|
|
||||||
static Rate rate(10);
|
static Rate rate(10);
|
||||||
if (!rate) return;
|
if (!rate) return;
|
||||||
|
|
||||||
|
|||||||
@@ -27,14 +27,12 @@ void setupRC() {
|
|||||||
|
|
||||||
bool readRC() {
|
bool readRC() {
|
||||||
if (rcRxPin < 0) return false;
|
if (rcRxPin < 0) return false;
|
||||||
if (rc.read()) {
|
if (!rc.read()) return false;
|
||||||
SBUSData data = rc.data();
|
|
||||||
for (int i = 0; i < 16; i++) channels[i] = data.ch[i]; // copy channels data
|
rc.getChannels(channels);
|
||||||
normalizeRC();
|
normalizeRC();
|
||||||
controlTime = t;
|
controlTime = t;
|
||||||
return true;
|
return true;
|
||||||
}
|
|
||||||
return false;
|
|
||||||
}
|
}
|
||||||
|
|
||||||
void normalizeRC() {
|
void normalizeRC() {
|
||||||
@@ -55,18 +53,19 @@ void calibrateRC() {
|
|||||||
print("RC_RX_PIN = %d, set the RC pin!\n", rcRxPin);
|
print("RC_RX_PIN = %d, set the RC pin!\n", rcRxPin);
|
||||||
return;
|
return;
|
||||||
}
|
}
|
||||||
uint16_t zero[16];
|
|
||||||
uint16_t center[16];
|
uint16_t zero[16]; // for zero positions
|
||||||
uint16_t max[16];
|
uint16_t center[16]; // for center positions
|
||||||
|
uint16_t _[16]; // for unused data
|
||||||
print("1/8 Calibrating RC: put all switches to default positions [3 sec]\n");
|
print("1/8 Calibrating RC: put all switches to default positions [3 sec]\n");
|
||||||
pause(3);
|
pause(3);
|
||||||
calibrateRCChannel(NULL, zero, zero, "2/8 Move sticks [3 sec]\n... ...\n... .o.\n.o. ...\n");
|
calibrateRCChannel(NULL, _, zero, "2/8 Move sticks [3 sec]\n... ...\n... .o.\n.o. ...\n");
|
||||||
calibrateRCChannel(NULL, center, center, "3/8 Move sticks [3 sec]\n... ...\n.o. .o.\n... ...\n");
|
calibrateRCChannel(&throttleChannel, zero, _, "3/8 Move sticks [3 sec]\n.o. ...\n... .o.\n... ...\n");
|
||||||
calibrateRCChannel(&throttleChannel, zero, max, "4/8 Move sticks [3 sec]\n.o. ...\n... .o.\n... ...\n");
|
calibrateRCChannel(NULL, _, center, "4/8 Move sticks [3 sec]\n... ...\n.o. .o.\n... ...\n");
|
||||||
calibrateRCChannel(&yawChannel, center, max, "5/8 Move sticks [3 sec]\n... ...\n..o .o.\n... ...\n");
|
calibrateRCChannel(&yawChannel, center, _, "5/8 Move sticks [3 sec]\n... ...\n..o .o.\n... ...\n");
|
||||||
calibrateRCChannel(&pitchChannel, zero, max, "6/8 Move sticks [3 sec]\n... .o.\n... ...\n.o. ...\n");
|
calibrateRCChannel(&pitchChannel, zero, _, "6/8 Move sticks [3 sec]\n... .o.\n... ...\n.o. ...\n");
|
||||||
calibrateRCChannel(&rollChannel, zero, max, "7/8 Move sticks [3 sec]\n... ...\n... ..o\n.o. ...\n");
|
calibrateRCChannel(&rollChannel, zero, _, "7/8 Move sticks [3 sec]\n... ...\n... ..o\n.o. ...\n");
|
||||||
calibrateRCChannel(&modeChannel, zero, max, "8/8 Put mode switch to max [3 sec]\n");
|
calibrateRCChannel(&modeChannel, zero, _, "8/8 Put mode switch to max [3 sec]\n");
|
||||||
printRCCalibration();
|
printRCCalibration();
|
||||||
}
|
}
|
||||||
|
|
||||||
|
|||||||
@@ -8,10 +8,12 @@ extern float controlRoll, controlPitch, controlThrottle, controlYaw;
|
|||||||
|
|
||||||
float rcLossTimeout = 1;
|
float rcLossTimeout = 1;
|
||||||
float descendTime = 10;
|
float descendTime = 10;
|
||||||
|
float disarmTilt = radians(120);
|
||||||
|
|
||||||
void failsafe() {
|
void failsafe() {
|
||||||
rcLossFailsafe();
|
rcLossFailsafe();
|
||||||
autoFailsafe();
|
autoFailsafe();
|
||||||
|
tiltFailsafe();
|
||||||
}
|
}
|
||||||
|
|
||||||
// RC loss failsafe
|
// RC loss failsafe
|
||||||
@@ -36,7 +38,7 @@ void descend() {
|
|||||||
// Allow pilot to interrupt automatic flight
|
// Allow pilot to interrupt automatic flight
|
||||||
void autoFailsafe() {
|
void autoFailsafe() {
|
||||||
static float roll, pitch, yaw, throttle;
|
static float roll, pitch, yaw, throttle;
|
||||||
if (roll != controlRoll || pitch != controlPitch || yaw != controlYaw || abs(throttle - controlThrottle) > 0.05) {
|
if (abs(roll - controlRoll) > 0.05 || abs(pitch - controlPitch) > 0.05 || abs(yaw - controlYaw) > 0.05 || abs(throttle - controlThrottle) > 0.05) {
|
||||||
// controls changed and mode switch is not configured
|
// controls changed and mode switch is not configured
|
||||||
if (mode == AUTO && invalid(controlMode)) mode = STAB; // regain control by the pilot
|
if (mode == AUTO && invalid(controlMode)) mode = STAB; // regain control by the pilot
|
||||||
}
|
}
|
||||||
@@ -45,3 +47,15 @@ void autoFailsafe() {
|
|||||||
yaw = controlYaw;
|
yaw = controlYaw;
|
||||||
throttle = controlThrottle;
|
throttle = controlThrottle;
|
||||||
}
|
}
|
||||||
|
|
||||||
|
// Disarm if tilted too much
|
||||||
|
void tiltFailsafe() {
|
||||||
|
if (!armed) return;
|
||||||
|
if (mode != STAB) return;
|
||||||
|
|
||||||
|
Vector up = Quaternion::rotateVector(Vector(0, 0, 1), attitude);
|
||||||
|
float tilt = acos(up.z);
|
||||||
|
if (disarmTilt && tilt > disarmTilt) {
|
||||||
|
armed = false;
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|||||||
@@ -6,6 +6,7 @@
|
|||||||
#pragma once
|
#pragma once
|
||||||
|
|
||||||
#include <math.h>
|
#include <math.h>
|
||||||
|
#include <ESP32_NOW_Serial.h>
|
||||||
|
|
||||||
const float ONE_G = 9.80665;
|
const float ONE_G = 9.80665;
|
||||||
extern float t;
|
extern float t;
|
||||||
@@ -22,6 +23,12 @@ bool valid(float x) {
|
|||||||
return isfinite(x);
|
return isfinite(x);
|
||||||
}
|
}
|
||||||
|
|
||||||
|
bool floatEquals(float a, float b, float epsilon = 0) {
|
||||||
|
if (isnan(a) && isnan(b)) return true;
|
||||||
|
if (a == b) return true;
|
||||||
|
return fabsf(a - b) <= epsilon;
|
||||||
|
}
|
||||||
|
|
||||||
// Wrap angle to [-PI, PI)
|
// Wrap angle to [-PI, PI)
|
||||||
float wrapAngle(float angle) {
|
float wrapAngle(float angle) {
|
||||||
angle = fmodf(angle, 2 * PI);
|
angle = fmodf(angle, 2 * PI);
|
||||||
@@ -36,13 +43,70 @@ float wrapAngle(float angle) {
|
|||||||
// Trim and split string by spaces
|
// Trim and split string by spaces
|
||||||
void splitString(String& str, String& token0, String& token1, String& token2) {
|
void splitString(String& str, String& token0, String& token1, String& token2) {
|
||||||
str.trim();
|
str.trim();
|
||||||
|
if (str.isEmpty()) return;
|
||||||
char chars[str.length() + 1];
|
char chars[str.length() + 1];
|
||||||
str.toCharArray(chars, str.length() + 1);
|
str.toCharArray(chars, str.length() + 1);
|
||||||
token0 = strtok(chars, " ");
|
token0 = strtok(chars, " ");
|
||||||
token1 = strtok(NULL, " "); // String(NULL) creates empty string
|
token1 = strtok(NULL, " ");
|
||||||
token2 = strtok(NULL, "");
|
token2 = strtok(NULL, "");
|
||||||
|
if (token1.c_str() == NULL) token1 = "";
|
||||||
|
if (token2.c_str() == NULL) token2 = "";
|
||||||
}
|
}
|
||||||
|
|
||||||
|
// Simplified ESP-NOW Serial without resends
|
||||||
|
class ESPNOWSerial : public ESP_NOW_Serial_Class {
|
||||||
|
public:
|
||||||
|
int lost = 0;
|
||||||
|
using ESP_NOW_Serial_Class::ESP_NOW_Serial_Class;
|
||||||
|
void onSent(bool success) override {
|
||||||
|
if (!success) lost++;
|
||||||
|
ESP_NOW_Serial_Class::onSent(true); // always report success to avoid resends
|
||||||
|
}
|
||||||
|
};
|
||||||
|
|
||||||
|
// Simple variant type for logging and parameters
|
||||||
|
struct Value {
|
||||||
|
enum { EMPTY, FLOAT, INT, BOOL, FLOAT_FN, INT_FN, BOOL_FN } type;
|
||||||
|
union {
|
||||||
|
void *pointer;
|
||||||
|
float *_float;
|
||||||
|
int *_int;
|
||||||
|
bool *_bool;
|
||||||
|
float (*floatFn)();
|
||||||
|
int (*intFn)();
|
||||||
|
bool (*boolFn)();
|
||||||
|
};
|
||||||
|
|
||||||
|
Value() : type(EMPTY), pointer(nullptr) {};
|
||||||
|
Value(float *pt) : type(FLOAT), _float(pt) {};
|
||||||
|
Value(int *pt) : type(INT), _int(pt) {};
|
||||||
|
Value(bool *pt) : type(BOOL), _bool(pt) {};
|
||||||
|
Value(float (*fn)()) : type(FLOAT_FN), floatFn(fn) {};
|
||||||
|
Value(int (*fn)()) : type(INT_FN), intFn(fn) {};
|
||||||
|
Value(bool (*fn)()) : type(BOOL_FN), boolFn(fn) {};
|
||||||
|
|
||||||
|
float get() const {
|
||||||
|
switch (type) {
|
||||||
|
case FLOAT: return *_float;
|
||||||
|
case INT: return *_int;
|
||||||
|
case BOOL: return *_bool ? 1 : 0;
|
||||||
|
case FLOAT_FN: return floatFn();
|
||||||
|
case INT_FN: return intFn();
|
||||||
|
case BOOL_FN: return boolFn() ? 1 : 0;
|
||||||
|
default: return NAN;
|
||||||
|
}
|
||||||
|
};
|
||||||
|
|
||||||
|
void set(float value) const {
|
||||||
|
switch (type) {
|
||||||
|
case FLOAT: *_float = value; break;
|
||||||
|
case INT: *_int = value; break;
|
||||||
|
case BOOL: *_bool = (value != 0); break;
|
||||||
|
default: break;
|
||||||
|
}
|
||||||
|
};
|
||||||
|
};
|
||||||
|
|
||||||
// Rate limiter
|
// Rate limiter
|
||||||
class Rate {
|
class Rate {
|
||||||
public:
|
public:
|
||||||
@@ -51,6 +115,9 @@ public:
|
|||||||
Rate(float rate) : rate(rate) {}
|
Rate(float rate) : rate(rate) {}
|
||||||
|
|
||||||
operator bool() {
|
operator bool() {
|
||||||
|
if (t == last) {
|
||||||
|
return true; // the same step
|
||||||
|
}
|
||||||
if (t - last >= 1 / rate) {
|
if (t - last >= 1 / rate) {
|
||||||
last = t;
|
last = t;
|
||||||
return true;
|
return true;
|
||||||
|
|||||||
@@ -1,77 +1,152 @@
|
|||||||
// Copyright (c) 2023 Oleg Kalachev <okalachev@gmail.com>
|
// Copyright (c) 2023 Oleg Kalachev <okalachev@gmail.com>
|
||||||
// Repository: https://github.com/okalachev/flix
|
// Repository: https://github.com/okalachev/flix
|
||||||
|
|
||||||
// Wi-Fi communication
|
// Wi-Fi and ESP-NOW communication
|
||||||
|
|
||||||
#include <WiFi.h>
|
#include <WiFi.h>
|
||||||
#include <WiFiAP.h>
|
#include <WiFiAP.h>
|
||||||
#include <WiFiUdp.h>
|
#include <WiFiUdp.h>
|
||||||
#include "Preferences.h"
|
#include <MacAddress.h>
|
||||||
|
#include <ESP32_NOW_Serial.h>
|
||||||
|
#include <Preferences.h>
|
||||||
|
#include "util.h"
|
||||||
|
|
||||||
extern Preferences storage; // use the main preferences storage
|
extern Preferences storage; // use the main preferences storage
|
||||||
|
|
||||||
const int W_DISABLED = 0, W_AP = 1, W_STA = 2;
|
const int W_DISABLED = 0, W_AP = 1, W_STA = 2, W_ESPNOW = 3;
|
||||||
int wifiMode = W_AP;
|
int wifiMode = W_AP;
|
||||||
|
|
||||||
|
int wifiLongRange = 0;
|
||||||
int udpLocalPort = 14550;
|
int udpLocalPort = 14550;
|
||||||
int udpRemotePort = 14550;
|
int udpRemotePort = 14550;
|
||||||
IPAddress udpRemoteIP = "255.255.255.255";
|
IPAddress udpRemoteIP = "255.255.255.255";
|
||||||
|
|
||||||
WiFiUDP udp;
|
WiFiUDP udp;
|
||||||
|
|
||||||
|
ESPNOWSerial espnow(NULL, 0, WIFI_IF_AP);
|
||||||
|
ESPNOWSerial espnowBroadcast(ESP_NOW.BROADCAST_ADDR, 0, WIFI_IF_AP);
|
||||||
|
int espnowChannel = 6;
|
||||||
|
|
||||||
void setupWiFi() {
|
void setupWiFi() {
|
||||||
print("Setup Wi-Fi\n");
|
print("Setup Wi-Fi\n");
|
||||||
|
WiFi.enableLongRange(wifiLongRange);
|
||||||
|
|
||||||
if (wifiMode == W_AP) {
|
if (wifiMode == W_AP) {
|
||||||
WiFi.softAP(storage.getString("WIFI_AP_SSID", "flix").c_str(), storage.getString("WIFI_AP_PASS", "flixwifi").c_str());
|
WiFi.softAP(storage.getString("WIFI_AP_SSID", "flix").c_str(), storage.getString("WIFI_AP_PASS", "flixwifi").c_str());
|
||||||
} else if (wifiMode == W_STA) {
|
udp.begin(udpLocalPort);
|
||||||
WiFi.begin(storage.getString("WIFI_STA_SSID", "").c_str(), storage.getString("WIFI_STA_PASS", "").c_str());
|
|
||||||
}
|
}
|
||||||
|
|
||||||
|
if (wifiMode == W_STA) {
|
||||||
|
WiFi.begin(storage.getString("WIFI_STA_SSID", "").c_str(), storage.getString("WIFI_STA_PASS", "").c_str());
|
||||||
|
udp.begin(udpLocalPort);
|
||||||
|
}
|
||||||
|
|
||||||
|
if (wifiMode == W_ESPNOW) {
|
||||||
|
WiFi.mode(WIFI_AP);
|
||||||
|
WiFi.setChannel(espnowChannel);
|
||||||
|
espnow.addr(MacAddress(storage.getString("ESPNOW_PEER_MAC", "FF:FF:FF:FF:FF:FF").c_str()));
|
||||||
|
String key = storage.getString("ESPNOW_PEER_KEY", "");
|
||||||
|
espnow.setKey(key.isEmpty() ? nullptr : (const uint8_t *)key.c_str());
|
||||||
|
espnow.begin();
|
||||||
|
espnowBroadcast.begin();
|
||||||
|
}
|
||||||
|
|
||||||
WiFi.setSleep(false); // disable power save
|
WiFi.setSleep(false); // disable power save
|
||||||
udp.begin(udpLocalPort);
|
|
||||||
}
|
}
|
||||||
|
|
||||||
void sendWiFi(const uint8_t *buf, int len) {
|
void sendWiFi(const uint8_t *buf, int len) {
|
||||||
|
if (espnow) {
|
||||||
|
espnow.write(buf, len);
|
||||||
|
|
||||||
|
static Rate discovery(2);
|
||||||
|
if (espnow.isEncrypted() && discovery) espnowBroadcast.write((const uint8_t *)"flix", 4); // broadcast message to help finding this device
|
||||||
|
return;
|
||||||
|
}
|
||||||
|
|
||||||
if (WiFi.softAPgetStationNum() == 0 && !WiFi.isConnected()) return;
|
if (WiFi.softAPgetStationNum() == 0 && !WiFi.isConnected()) return;
|
||||||
|
|
||||||
udp.beginPacket(udpRemoteIP, udpRemotePort);
|
udp.beginPacket(udpRemoteIP, udpRemotePort);
|
||||||
udp.write(buf, len);
|
udp.write(buf, len);
|
||||||
udp.endPacket();
|
udp.endPacket();
|
||||||
}
|
}
|
||||||
|
|
||||||
int receiveWiFi(uint8_t *buf, int len) {
|
int receiveWiFi(uint8_t *buf, int len) {
|
||||||
|
if (espnow) {
|
||||||
|
return espnow.read(buf, len);
|
||||||
|
}
|
||||||
|
|
||||||
|
if (WiFi.softAPgetStationNum() == 0 && !WiFi.isConnected()) return 0;
|
||||||
|
|
||||||
udp.parsePacket();
|
udp.parsePacket();
|
||||||
if (udp.remoteIP()) udpRemoteIP = udp.remoteIP();
|
if (udp.remoteIP()) udpRemoteIP = udp.remoteIP();
|
||||||
return udp.read(buf, len);
|
return udp.read(buf, len);
|
||||||
}
|
}
|
||||||
|
|
||||||
void printWiFiInfo() {
|
void printWiFiInfo() {
|
||||||
if (WiFi.getMode() == WIFI_MODE_AP) {
|
if (espnow) {
|
||||||
|
print("Mode: ESP-NOW\n");
|
||||||
|
print("ESP-NOW version: %d\n", ESP_NOW.getVersion());
|
||||||
|
print("Max packet size: %d\n", ESP_NOW.getMaxDataLen());
|
||||||
|
print("MAC: %s\n", WiFi.softAPmacAddress().c_str());
|
||||||
|
print("Peer MAC: %s\n", MacAddress(espnow.addr()).toString().c_str());
|
||||||
|
print("Encrypted: %d\n", espnow.isEncrypted());
|
||||||
|
print("Channel: %d\n", WiFi.channel());
|
||||||
|
print("Lost packets: %d\n", espnow.lost);
|
||||||
|
} else if (WiFi.getMode() == WIFI_MODE_AP) {
|
||||||
print("Mode: Access Point (AP)\n");
|
print("Mode: Access Point (AP)\n");
|
||||||
print("MAC: %s\n", WiFi.softAPmacAddress().c_str());
|
print("MAC: %s\n", WiFi.softAPmacAddress().c_str());
|
||||||
print("SSID: %s\n", WiFi.softAPSSID().c_str());
|
print("SSID: %s\n", WiFi.softAPSSID().c_str());
|
||||||
print("Password: ***\n");
|
print("Password: ***\n");
|
||||||
|
print("Channel: %d\n", WiFi.channel());
|
||||||
print("Clients: %d\n", WiFi.softAPgetStationNum());
|
print("Clients: %d\n", WiFi.softAPgetStationNum());
|
||||||
print("IP: %s\n", WiFi.softAPIP().toString().c_str());
|
print("IP: %s\n", WiFi.softAPIP().toString().c_str());
|
||||||
|
print("Remote IP: %s\n", udpRemoteIP.toString().c_str());
|
||||||
} else if (WiFi.getMode() == WIFI_MODE_STA) {
|
} else if (WiFi.getMode() == WIFI_MODE_STA) {
|
||||||
print("Mode: Client (STA)\n");
|
print("Mode: Client (STA)\n");
|
||||||
print("Connected: %d\n", WiFi.isConnected());
|
print("Connected: %d\n", WiFi.isConnected());
|
||||||
print("MAC: %s\n", WiFi.macAddress().c_str());
|
print("MAC: %s\n", WiFi.macAddress().c_str());
|
||||||
print("SSID: %s\n", WiFi.SSID().c_str());
|
print("SSID: %s\n", WiFi.SSID().c_str());
|
||||||
print("Password: ***\n");
|
print("Password: ***\n");
|
||||||
|
print("Channel: %d\n", WiFi.channel());
|
||||||
|
print("RSSI: %d dBm\n", WiFi.RSSI());
|
||||||
print("IP: %s\n", WiFi.localIP().toString().c_str());
|
print("IP: %s\n", WiFi.localIP().toString().c_str());
|
||||||
|
print("Remote IP: %s\n", udpRemoteIP.toString().c_str());
|
||||||
} else {
|
} else {
|
||||||
print("Mode: Disabled\n");
|
print("Mode: Disabled\n");
|
||||||
return;
|
|
||||||
}
|
}
|
||||||
print("Remote IP: %s\n", udpRemoteIP.toString().c_str());
|
|
||||||
print("MAVLink connected: %d\n", mavlinkConnected);
|
print("MAVLink connected: %d\n", mavlinkConnected);
|
||||||
}
|
}
|
||||||
|
|
||||||
void configWiFi(bool ap, const char *ssid, const char *password) {
|
void configWiFi(int mode, const char *first, const char *second) {
|
||||||
if (ap) {
|
MacAddress mac;
|
||||||
storage.putString("WIFI_AP_SSID", ssid);
|
if (mode == W_AP && strlen(first) > 0 && strlen(second) >= 8) {
|
||||||
storage.putString("WIFI_AP_PASS", password);
|
storage.putString("WIFI_AP_SSID", first);
|
||||||
|
storage.putString("WIFI_AP_PASS", second);
|
||||||
|
} else if (mode == W_STA && strlen(first) > 0 && strlen(second) >= 8) {
|
||||||
|
storage.putString("WIFI_STA_SSID", first);
|
||||||
|
storage.putString("WIFI_STA_PASS", second);
|
||||||
|
} else if (mode == W_ESPNOW && mac.fromString(first)) {
|
||||||
|
storage.putString("ESPNOW_PEER_MAC", first);
|
||||||
|
storage.putString("ESPNOW_PEER_KEY", strlen(second) == ESP_NOW_KEY_LEN ? second : "");
|
||||||
} else {
|
} else {
|
||||||
storage.putString("WIFI_STA_SSID", ssid);
|
print("Invalid configuration\n");
|
||||||
storage.putString("WIFI_STA_PASS", password);
|
return;
|
||||||
}
|
}
|
||||||
print("✓ Reboot to apply new settings\n");
|
print("✓ Reboot to apply new settings\n");
|
||||||
}
|
}
|
||||||
|
|
||||||
|
void setWiFiMode(const String& mode) {
|
||||||
|
if (mode == "ap") {
|
||||||
|
wifiMode = W_AP;
|
||||||
|
} else if (mode == "sta") {
|
||||||
|
wifiMode = W_STA;
|
||||||
|
} else if (mode == "espnow") {
|
||||||
|
wifiMode = W_ESPNOW;
|
||||||
|
} else if (mode == "off") {
|
||||||
|
wifiMode = W_DISABLED;
|
||||||
|
} else {
|
||||||
|
print("Invalid Wi-Fi mode\n");
|
||||||
|
return;
|
||||||
|
}
|
||||||
|
static const char *modes[] = {"Disabled", "Access Point (AP)", "Client (STA)", "ESP-NOW"};
|
||||||
|
print("✓ Wi-Fi mode set to %s, reboot to apply\n", modes[wifiMode]);
|
||||||
|
}
|
||||||
|
|||||||
@@ -20,6 +20,10 @@
|
|||||||
#define radians(deg) ((deg)*DEG_TO_RAD)
|
#define radians(deg) ((deg)*DEG_TO_RAD)
|
||||||
#define degrees(rad) ((rad)*RAD_TO_DEG)
|
#define degrees(rad) ((rad)*RAD_TO_DEG)
|
||||||
|
|
||||||
|
#define MALLOC_CAP_SPIRAM (1<<10)
|
||||||
|
#define MALLOC_CAP_8BIT (1<<2)
|
||||||
|
#define ESP_NOW_MAX_DATA_LEN_V2 1470
|
||||||
|
|
||||||
#define constrain(amt,low,high) ((amt)<(low)?(low):((amt)>(high)?(high):(amt)))
|
#define constrain(amt,low,high) ((amt)<(low)?(low):((amt)>(high)?(high):(amt)))
|
||||||
template<typename T> T max(T a, T b) { return a > b ? a : b; }
|
template<typename T> T max(T a, T b) { return a > b ? a : b; }
|
||||||
template<typename T> T min(T a, T b) { return a < b ? a : b; }
|
template<typename T> T min(T a, T b) { return a < b ? a : b; }
|
||||||
@@ -156,6 +160,8 @@ HardwareSerial Serial, Serial1, Serial2;
|
|||||||
class EspClass {
|
class EspClass {
|
||||||
public:
|
public:
|
||||||
void restart() { Serial.println("Ignore reboot in simulation"); }
|
void restart() { Serial.println("Ignore reboot in simulation"); }
|
||||||
|
uint32_t getFreeHeap() { return 300 * 1024; } // assume 300 KB free heap
|
||||||
|
uint32_t getFreePsram() { return 8 * 1024 * 1024; } // assume 8 MB free PSRAM
|
||||||
} ESP;
|
} ESP;
|
||||||
|
|
||||||
unsigned long __delayTime = 0;
|
unsigned long __delayTime = 0;
|
||||||
@@ -165,10 +171,16 @@ void delay(uint32_t ms) {
|
|||||||
__delayTime += ms * 1000;
|
__delayTime += ms * 1000;
|
||||||
}
|
}
|
||||||
|
|
||||||
|
void *heap_caps_calloc(size_t n, size_t size, uint32_t caps) {
|
||||||
|
return calloc(n, size);
|
||||||
|
}
|
||||||
|
|
||||||
bool ledcAttach(uint8_t pin, uint32_t freq, uint8_t resolution) { return true; }
|
bool ledcAttach(uint8_t pin, uint32_t freq, uint8_t resolution) { return true; }
|
||||||
bool ledcWrite(uint8_t pin, uint32_t duty) { return true; }
|
bool ledcWrite(uint8_t pin, uint32_t duty) { return true; }
|
||||||
uint32_t ledcChangeFrequency(uint8_t pin, uint32_t freq, uint8_t resolution) { return freq; }
|
uint32_t ledcChangeFrequency(uint8_t pin, uint32_t freq, uint8_t resolution) { return freq; }
|
||||||
|
int8_t digitalPinToAnalogChannel(uint8_t pin) { return -1; }
|
||||||
uint32_t analogReadMilliVolts(uint8_t pin) { return 0; }
|
uint32_t analogReadMilliVolts(uint8_t pin) { return 0; }
|
||||||
|
float temperatureRead() { return 0; }
|
||||||
|
|
||||||
unsigned long __micros;
|
unsigned long __micros;
|
||||||
unsigned long __resetTime = 0;
|
unsigned long __resetTime = 0;
|
||||||
|
|||||||
@@ -0,0 +1,12 @@
|
|||||||
|
// Dummy file for the simulator
|
||||||
|
|
||||||
|
class ESP_NOW_Peer {
|
||||||
|
protected:
|
||||||
|
size_t send(const uint8_t *data, int len) { return 0; }
|
||||||
|
};
|
||||||
|
|
||||||
|
class ESP_NOW_Serial_Class : public ESP_NOW_Peer {
|
||||||
|
public:
|
||||||
|
virtual void onSent(bool success) {};
|
||||||
|
virtual size_t write(const uint8_t *data, size_t len) { return 0; };
|
||||||
|
};
|
||||||
@@ -15,12 +15,11 @@ public:
|
|||||||
SBUS(HardwareSerial& bus, const int8_t rxpin, const int8_t txpin, const bool inv = true) {};
|
SBUS(HardwareSerial& bus, const int8_t rxpin, const int8_t txpin, const bool inv = true) {};
|
||||||
void begin(int rxpin = -1, int txpin = -1, bool inv = true, bool fast = false) {};
|
void begin(int rxpin = -1, int txpin = -1, bool inv = true, bool fast = false) {};
|
||||||
bool read() { return joystickInit(); };
|
bool read() { return joystickInit(); };
|
||||||
SBUSData data() {
|
void getChannels(uint16_t (&channels)[16]) const {
|
||||||
SBUSData data;
|
int16_t ch[16];
|
||||||
joystickGet(data.ch);
|
joystickGet(ch);
|
||||||
for (int i = 0; i < 16; i++) {
|
for (int i = 0; i < 16; i++) {
|
||||||
data.ch[i] = map(data.ch[i], -32768, 32767, 1000, 2000); // convert to pulse width style
|
channels[i] = map(ch[i], -32768, 32767, 1000, 2000); // convert to pulse width style
|
||||||
}
|
}
|
||||||
return data;
|
|
||||||
};
|
};
|
||||||
};
|
};
|
||||||
|
|||||||
@@ -9,7 +9,7 @@
|
|||||||
#include "quaternion.h"
|
#include "quaternion.h"
|
||||||
#include "Arduino.h"
|
#include "Arduino.h"
|
||||||
#include "wifi.h"
|
#include "wifi.h"
|
||||||
#include "lpf.h"
|
#include "filter.h"
|
||||||
|
|
||||||
extern float t, dt;
|
extern float t, dt;
|
||||||
extern float controlRoll, controlPitch, controlYaw, controlThrottle, controlMode;
|
extern float controlRoll, controlPitch, controlYaw, controlThrottle, controlMode;
|
||||||
@@ -38,17 +38,27 @@ const char* getModeName();
|
|||||||
void sendMotors();
|
void sendMotors();
|
||||||
int getDutyCycle(float value);
|
int getDutyCycle(float value);
|
||||||
bool motorsActive();
|
bool motorsActive();
|
||||||
void testMotor(int n);
|
void testMotor(int, float);
|
||||||
void print(const char* format, ...);
|
void print(const char* format, ...);
|
||||||
void pause(float duration);
|
void pause(float duration);
|
||||||
void doCommand(String str, bool echo);
|
void doCommand(String str, bool echo);
|
||||||
void handleInput();
|
void handleInput();
|
||||||
|
void setupRC();
|
||||||
void normalizeRC();
|
void normalizeRC();
|
||||||
void calibrateRC();
|
void calibrateRC();
|
||||||
void calibrateRCChannel(int *channel, uint16_t zero[16], uint16_t max[16], const char *str);
|
void calibrateRCChannel(int*, uint16_t[16], uint16_t[16], const char*);
|
||||||
void printRCCalibration();
|
void printRCCalibration();
|
||||||
|
void loopLog();
|
||||||
|
void resetLog();
|
||||||
|
void writeLog(const void *data, size_t size);
|
||||||
|
void readLog(void *data, size_t position, size_t size);
|
||||||
|
bool isTopicUpdated(const uint8_t topic);
|
||||||
|
void printLogInfo();
|
||||||
|
int estimateLogDuration();
|
||||||
void printLogHeader();
|
void printLogHeader();
|
||||||
void printLogData();
|
void printLogValues(const char *filter);
|
||||||
|
void configLogThrottle(const char *name, float throttle);
|
||||||
|
void exposeLogValue(const char *name);
|
||||||
void processMavlink();
|
void processMavlink();
|
||||||
void sendMavlink();
|
void sendMavlink();
|
||||||
void sendMessage(const void *msg);
|
void sendMessage(const void *msg);
|
||||||
@@ -57,23 +67,30 @@ void handleMavlink(const void *_msg);
|
|||||||
void mavlinkPrint(const char* str);
|
void mavlinkPrint(const char* str);
|
||||||
void sendMavlinkPrint();
|
void sendMavlinkPrint();
|
||||||
inline Quaternion fluToFrd(const Quaternion &q);
|
inline Quaternion fluToFrd(const Quaternion &q);
|
||||||
|
void setupPower();
|
||||||
void failsafe();
|
void failsafe();
|
||||||
void rcLossFailsafe();
|
void rcLossFailsafe();
|
||||||
void descend();
|
void descend();
|
||||||
void autoFailsafe();
|
void autoFailsafe();
|
||||||
|
void tiltFailsafe();
|
||||||
int parametersCount();
|
int parametersCount();
|
||||||
const char *getParameterName(int index);
|
const char *getParameterName(int index);
|
||||||
float getParameter(int index);
|
float getParameter(int index);
|
||||||
float getParameter(const char *name);
|
float getParameter(const char *name);
|
||||||
bool setParameter(const char *name, const float value);
|
bool setParameter(const char *name, const float value);
|
||||||
void printParameters();
|
void printParameters(const char *filter);
|
||||||
void resetParameters();
|
void resetParameters();
|
||||||
|
|
||||||
// mocks
|
// mocks
|
||||||
void setLED(bool on) {};
|
void setLED(bool on) {};
|
||||||
void calibrateGyro() { print("Skip gyro calibrating\n"); };
|
|
||||||
void calibrateAccel() { print("Skip accel calibrating\n"); };
|
void calibrateAccel() { print("Skip accel calibrating\n"); };
|
||||||
void printIMUCalibration() { print("cal: N/A\n"); };
|
void printIMUCalibration() { print("cal: N/A\n"); };
|
||||||
void printIMUInfo() {};
|
void printIMUInfo() {};
|
||||||
void printWiFiInfo() {};
|
void printWiFiInfo() {};
|
||||||
void configWiFi(bool, const char*, const char*) { print("Skip WiFi config\n"); };
|
void configWiFi(bool, const char*, const char*) { print("Skip WiFi config\n"); };
|
||||||
|
void setWiFiMode(const String& mode) { print("Skip WiFi mode set\n"); };
|
||||||
|
|
||||||
|
class IMU {
|
||||||
|
public:
|
||||||
|
float getTemp() { return 0; }
|
||||||
|
} imu;
|
||||||
|
|||||||
@@ -23,7 +23,7 @@
|
|||||||
#include "estimate.ino"
|
#include "estimate.ino"
|
||||||
#include "safety.ino"
|
#include "safety.ino"
|
||||||
#include "log.ino"
|
#include "log.ino"
|
||||||
#include "lpf.h"
|
#include "filter.h"
|
||||||
#include "mavlink.ino"
|
#include "mavlink.ino"
|
||||||
#include "motors.ino"
|
#include "motors.ino"
|
||||||
#include "parameters.ino"
|
#include "parameters.ino"
|
||||||
@@ -55,6 +55,8 @@ public:
|
|||||||
initNode();
|
initNode();
|
||||||
Serial.begin(0);
|
Serial.begin(0);
|
||||||
setupParameters();
|
setupParameters();
|
||||||
|
setupLog();
|
||||||
|
rcRxPin = 1; // set rc pin to enable rc reading
|
||||||
gzmsg << "Flix plugin loaded" << endl;
|
gzmsg << "Flix plugin loaded" << endl;
|
||||||
}
|
}
|
||||||
|
|
||||||
@@ -73,6 +75,8 @@ public:
|
|||||||
gyro = Vector(imu->AngularVelocity().X(), imu->AngularVelocity().Y(), imu->AngularVelocity().Z());
|
gyro = Vector(imu->AngularVelocity().X(), imu->AngularVelocity().Y(), imu->AngularVelocity().Z());
|
||||||
acc = this->accFilter.update(Vector(imu->LinearAcceleration().X(), imu->LinearAcceleration().Y(), imu->LinearAcceleration().Z()));
|
acc = this->accFilter.update(Vector(imu->LinearAcceleration().X(), imu->LinearAcceleration().Y(), imu->LinearAcceleration().Z()));
|
||||||
|
|
||||||
|
voltage = 4.2f; // dummy voltage value
|
||||||
|
|
||||||
readRC();
|
readRC();
|
||||||
estimate();
|
estimate();
|
||||||
|
|
||||||
@@ -85,7 +89,7 @@ public:
|
|||||||
|
|
||||||
applyMotorForces();
|
applyMotorForces();
|
||||||
publishTopics();
|
publishTopics();
|
||||||
logData();
|
loopLog();
|
||||||
syncParameters();
|
syncParameters();
|
||||||
}
|
}
|
||||||
|
|
||||||
|
|||||||
@@ -11,7 +11,12 @@
|
|||||||
#include <sys/poll.h>
|
#include <sys/poll.h>
|
||||||
#include <gazebo/gazebo.hh>
|
#include <gazebo/gazebo.hh>
|
||||||
|
|
||||||
int wifiMode = 1; // mock
|
// Mocks
|
||||||
|
int wifiMode = 1;
|
||||||
|
int wifiLongRange = 0;
|
||||||
|
int espnowChannel = 6;
|
||||||
|
const int W_DISABLED = 0, W_AP = 1, W_STA = 2, W_ESPNOW = 3;
|
||||||
|
|
||||||
int udpLocalPort = 14580;
|
int udpLocalPort = 14580;
|
||||||
int udpRemotePort = 14550;
|
int udpRemotePort = 14550;
|
||||||
const char *udpRemoteIP = "255.255.255.255";
|
const char *udpRemoteIP = "255.255.255.255";
|
||||||
|
|||||||
@@ -9,6 +9,7 @@ Usage:
|
|||||||
import csv
|
import csv
|
||||||
import json
|
import json
|
||||||
import docopt
|
import docopt
|
||||||
|
import math
|
||||||
from mcap.writer import Writer
|
from mcap.writer import Writer
|
||||||
|
|
||||||
args = docopt.docopt(__doc__)
|
args = docopt.docopt(__doc__)
|
||||||
@@ -39,7 +40,15 @@ channel_id = writer.register_channel(
|
|||||||
)
|
)
|
||||||
|
|
||||||
for row in csv_reader:
|
for row in csv_reader:
|
||||||
data = {key: float(value) for key, value in zip(header, row)}
|
if row[0] == '': continue
|
||||||
|
data = {}
|
||||||
|
for key, value in zip(header, row):
|
||||||
|
if value == '' or math.isnan(float(value)):
|
||||||
|
data[key] = None
|
||||||
|
else:
|
||||||
|
data[key] = float(value)
|
||||||
|
|
||||||
|
data = {key: float(value) if value != '' else None for key, value in zip(header, row)}
|
||||||
timestamp = round(float(row[0]) * 1e9)
|
timestamp = round(float(row[0]) * 1e9)
|
||||||
writer.add_message(channel_id=channel_id, log_time=timestamp, data=json.dumps(data).encode(), publish_time=timestamp,)
|
writer.add_message(channel_id=channel_id, log_time=timestamp, data=json.dumps(data).encode(), publish_time=timestamp,)
|
||||||
|
|
||||||
|
|||||||
@@ -0,0 +1,3 @@
|
|||||||
|
# ESPNOW-proxy
|
||||||
|
|
||||||
|
Proxy sketch for using ESP-NOW connection with Flix drone.
|
||||||
@@ -0,0 +1,108 @@
|
|||||||
|
// Copyright (c) 2026 Oleg Kalachev <okalachev@gmail.com>
|
||||||
|
// Repository: https://github.com/okalachev/flix
|
||||||
|
|
||||||
|
// Proxy for ESP-NOW connection
|
||||||
|
|
||||||
|
#include <vector>
|
||||||
|
#include <WiFi.h>
|
||||||
|
#include <ESP32_NOW_Serial.h>
|
||||||
|
#include <MacAddress.h>
|
||||||
|
#include <MAVLink.h>
|
||||||
|
#include <Preferences.h>
|
||||||
|
#include "../../flix/util.h"
|
||||||
|
|
||||||
|
const bool DISABLE_SWARM = true;
|
||||||
|
const int CHANNEL = -1; // -1 means auto search
|
||||||
|
char key[ESP_NOW_KEY_LEN + 1] = {0}; // with trailing null
|
||||||
|
|
||||||
|
Preferences storage;
|
||||||
|
|
||||||
|
std::vector<ESPNOWSerial *> peers;
|
||||||
|
bool stop = false;
|
||||||
|
|
||||||
|
void onNewPeer(const esp_now_recv_info_t *info, const uint8_t *data, int len, void *arg) {
|
||||||
|
if (len != 4 || memcmp(data, "flix", 4) != 0) return; // check if discovery message
|
||||||
|
|
||||||
|
if (stop) return;
|
||||||
|
|
||||||
|
Serial.printf("New peer: " MACSTR "\n", MAC2STR(info->src_addr));
|
||||||
|
ESPNOWSerial *link = new ESPNOWSerial(info->src_addr, WiFi.channel(), WIFI_IF_STA);
|
||||||
|
link->begin();
|
||||||
|
link->setKey((const uint8_t *)key);
|
||||||
|
peers.push_back(link);
|
||||||
|
}
|
||||||
|
|
||||||
|
void setup() {
|
||||||
|
Serial.begin(115200);
|
||||||
|
WiFi.mode(WIFI_STA);
|
||||||
|
WiFi.setSleep(false);
|
||||||
|
|
||||||
|
ESP_NOW.onNewPeer(onNewPeer, NULL);
|
||||||
|
ESP_NOW.begin();
|
||||||
|
|
||||||
|
storage.begin("espnow-proxy");
|
||||||
|
if (!storage.isKey("key")) {
|
||||||
|
generateRandomKey();
|
||||||
|
storage.putString("key", key);
|
||||||
|
}
|
||||||
|
strcpy(key, storage.getString("key").c_str());
|
||||||
|
}
|
||||||
|
|
||||||
|
void generateRandomKey() {
|
||||||
|
const char chars[] = "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789!@#$%^&*-_+=";
|
||||||
|
for (int i = 0; i < ESP_NOW_KEY_LEN; i++) {
|
||||||
|
key[i] = chars[random(0, strlen(chars))];
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|
||||||
|
void loop() {
|
||||||
|
uint8_t buf[5000];
|
||||||
|
|
||||||
|
static int channelIndex = 0;
|
||||||
|
static const int channels[] = {6, 11, 1, 2, 6, 11, 3, 4, 5, 6, 1, 11, 8, 6, 9, 10, 11, 6, 1, 12, 13}; // 6, 1 and 11 are most common
|
||||||
|
|
||||||
|
static unsigned long last = 0;
|
||||||
|
if (!stop && millis() - last > 500) {
|
||||||
|
// Change search channel
|
||||||
|
last = millis();
|
||||||
|
channelIndex = (channelIndex + 1) % (sizeof(channels) / sizeof(channels[0]));
|
||||||
|
int channel = CHANNEL < 0 ? channels[channelIndex] : CHANNEL;
|
||||||
|
Serial.printf("Run on Flix: espnow %s %s\n", WiFi.STA.macAddress().c_str(), key);
|
||||||
|
Serial.printf("Searching channel %d\n", channel);
|
||||||
|
WiFi.setChannel(channel);
|
||||||
|
}
|
||||||
|
|
||||||
|
// Send from Serial to ESP-NOW
|
||||||
|
while (Serial.available() > 0) {
|
||||||
|
int b = Serial.read();
|
||||||
|
if (b < 0) {
|
||||||
|
break;
|
||||||
|
}
|
||||||
|
|
||||||
|
mavlink_message_t msg;
|
||||||
|
mavlink_status_t status;
|
||||||
|
if (mavlink_parse_char(MAVLINK_COMM_0, (uint8_t)b, &msg, &status)) {
|
||||||
|
int len = mavlink_msg_to_send_buffer(buf, &msg);
|
||||||
|
for (ESPNOWSerial *link : peers) {
|
||||||
|
link->write(buf, len);
|
||||||
|
}
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|
||||||
|
// Send from ESP-NOW to Serial
|
||||||
|
for (ESPNOWSerial *link : peers) {
|
||||||
|
int len = link->read(buf, sizeof(buf));
|
||||||
|
if (!stop) {
|
||||||
|
for (int i = 0; i < len; i++) {
|
||||||
|
if (buf[i] == MAVLINK_STX) {
|
||||||
|
// Got MAVLink message, stop discovery
|
||||||
|
Serial.printf("Received MAVLink from " MACSTR "\n", MAC2STR(link->addr()));
|
||||||
|
if (DISABLE_SWARM) stop = true;
|
||||||
|
}
|
||||||
|
}
|
||||||
|
}
|
||||||
|
if (len > 0) {
|
||||||
|
Serial.write(buf, len);
|
||||||
|
}
|
||||||
|
}
|
||||||
|
}
|
||||||
@@ -0,0 +1,76 @@
|
|||||||
|
#!/usr/bin/env python3
|
||||||
|
|
||||||
|
"""Convert flight from Flix format to CSV
|
||||||
|
|
||||||
|
Usage:
|
||||||
|
log_to_csv.py <input_file>
|
||||||
|
"""
|
||||||
|
|
||||||
|
import os
|
||||||
|
from pyflix import Flix
|
||||||
|
import docopt
|
||||||
|
import struct
|
||||||
|
import csv
|
||||||
|
|
||||||
|
DIR = os.path.dirname(os.path.realpath(__file__))
|
||||||
|
HEADER_FILE = os.path.join(DIR, 'log/log_header.txt')
|
||||||
|
|
||||||
|
# Read log header
|
||||||
|
try:
|
||||||
|
# read from file
|
||||||
|
header = open(HEADER_FILE, 'r').read()
|
||||||
|
except FileNotFoundError:
|
||||||
|
flix = Flix()
|
||||||
|
header = flix.cli('log header') # receive the log schema
|
||||||
|
open(HEADER_FILE, 'w').write(header) # save to file
|
||||||
|
|
||||||
|
# Parse log header
|
||||||
|
topics = []
|
||||||
|
for line in header.splitlines():
|
||||||
|
if not line.startswith(' '):
|
||||||
|
topics.append([])
|
||||||
|
elif 'not logged' not in line:
|
||||||
|
topics[-1].append(line.strip())
|
||||||
|
|
||||||
|
# Read log file
|
||||||
|
args = docopt.docopt(__doc__)
|
||||||
|
input_file = args['<input_file>']
|
||||||
|
outfile_file = input_file + '.csv'
|
||||||
|
data = open(input_file, 'rb').read()
|
||||||
|
|
||||||
|
# Search for sync marker
|
||||||
|
SYNC_MARKER = bytes.fromhex('1A 91 4F F6 7F')
|
||||||
|
sync_offset = data.find(SYNC_MARKER)
|
||||||
|
if sync_offset == -1:
|
||||||
|
raise ValueError('Sync marker not found in log file')
|
||||||
|
data = data[sync_offset + len(SYNC_MARKER):]
|
||||||
|
data = data.replace(SYNC_MARKER, b'') # remove all other sync markers
|
||||||
|
|
||||||
|
header_row = [f'{value}' for topic in topics for value in topic]
|
||||||
|
rows = []
|
||||||
|
|
||||||
|
offset = 0
|
||||||
|
while offset < len(data):
|
||||||
|
try:
|
||||||
|
topic = struct.unpack_from('B', data, offset)[0]
|
||||||
|
offset += 1
|
||||||
|
|
||||||
|
if topic >= len(topics):
|
||||||
|
raise ValueError(f'Invalid topic {topic} at offset {offset}')
|
||||||
|
|
||||||
|
if topic == 0 or not rows:
|
||||||
|
rows.append({})
|
||||||
|
|
||||||
|
for name in topics[topic]:
|
||||||
|
value = struct.unpack_from('<f', data, offset)[0]
|
||||||
|
offset += 4
|
||||||
|
rows[-1][name] = value
|
||||||
|
except struct.error as e:
|
||||||
|
break
|
||||||
|
|
||||||
|
# Write CSV file
|
||||||
|
with open(outfile_file, 'w', newline='') as f:
|
||||||
|
writer = csv.DictWriter(f, fieldnames=header_row, extrasaction='ignore')
|
||||||
|
writer.writeheader()
|
||||||
|
rows = filter(lambda row: float(row.get('t', 0)), rows)
|
||||||
|
writer.writerows(rows)
|
||||||
@@ -28,6 +28,8 @@ from pyflix import Flix
|
|||||||
flix = Flix() # create a Flix object and wait for connection
|
flix = Flix() # create a Flix object and wait for connection
|
||||||
```
|
```
|
||||||
|
|
||||||
|
If using ESP-NOW connection, specify the proxy device name in `FLIX_DEVICE` environment variable or pass it to the constructor: `Flix(device='/dev/cu.usbserial-0001')`.
|
||||||
|
|
||||||
### Telemetry
|
### Telemetry
|
||||||
|
|
||||||
Basic telemetry is available through object properties. The property names generally match the corresponding variables in the firmware code:
|
Basic telemetry is available through object properties. The property names generally match the corresponding variables in the firmware code:
|
||||||
@@ -37,7 +39,7 @@ print(flix.connected) # True if connected to the drone
|
|||||||
print(flix.mode) # current flight mode (str)
|
print(flix.mode) # current flight mode (str)
|
||||||
print(flix.armed) # True if the drone is armed
|
print(flix.armed) # True if the drone is armed
|
||||||
print(flix.landed) # True if the drone is landed
|
print(flix.landed) # True if the drone is landed
|
||||||
print(flix.voltage) # battery voltage
|
print(flix.voltage) # battery voltage (NaN - unknown, ~0 - USB powered)
|
||||||
print(flix.attitude) # attitude quaternion [w, x, y, z]
|
print(flix.attitude) # attitude quaternion [w, x, y, z]
|
||||||
print(flix.attitude_euler) # attitude as Euler angles [roll, pitch, yaw]
|
print(flix.attitude_euler) # attitude as Euler angles [roll, pitch, yaw]
|
||||||
print(flix.rates) # angular rates [roll_rate, pitch_rate, yaw_rate]
|
print(flix.rates) # angular rates [roll_rate, pitch_rate, yaw_rate]
|
||||||
@@ -220,6 +222,13 @@ The following scripts demonstrate how to use the library:
|
|||||||
* [`log.py`](../log.py) — download flight logs from the drone.
|
* [`log.py`](../log.py) — download flight logs from the drone.
|
||||||
* [`example.py`](../example.py) — a simple example, prints telemetry data and waits for events.
|
* [`example.py`](../example.py) — a simple example, prints telemetry data and waits for events.
|
||||||
|
|
||||||
|
> [!TIP]
|
||||||
|
> Set `FLIX_DEVICE` environment variable to use these tools with ESP-NOW connection, for example:
|
||||||
|
>
|
||||||
|
> ```bash
|
||||||
|
> FLIX_DEVICE=/dev/cu.usbserial-0001 tools/cli.py
|
||||||
|
> ```
|
||||||
|
|
||||||
## Advanced usage
|
## Advanced usage
|
||||||
|
|
||||||
### MAVLink
|
### MAVLink
|
||||||
|
|||||||
@@ -5,6 +5,7 @@
|
|||||||
|
|
||||||
import os
|
import os
|
||||||
import time
|
import time
|
||||||
|
import math
|
||||||
from queue import Queue, Empty
|
from queue import Queue, Empty
|
||||||
from typing import Optional, Callable, List, Dict, Any, Union, Sequence
|
from typing import Optional, Callable, List, Dict, Any, Union, Sequence
|
||||||
import logging
|
import logging
|
||||||
@@ -26,7 +27,7 @@ class Flix:
|
|||||||
mode: str = ''
|
mode: str = ''
|
||||||
armed: bool = False
|
armed: bool = False
|
||||||
landed: bool = False
|
landed: bool = False
|
||||||
voltage: float = 0
|
voltage: float = math.nan
|
||||||
attitude: List[float]
|
attitude: List[float]
|
||||||
attitude_euler: List[float] # roll, pitch, yaw
|
attitude_euler: List[float] # roll, pitch, yaw
|
||||||
rates: List[float]
|
rates: List[float]
|
||||||
@@ -43,22 +44,27 @@ class Flix:
|
|||||||
_print_buffer: str = ''
|
_print_buffer: str = ''
|
||||||
_modes = ['RAW', 'ACRO', 'STAB', 'AUTO']
|
_modes = ['RAW', 'ACRO', 'STAB', 'AUTO']
|
||||||
|
|
||||||
def __init__(self, system_id: int=1, wait_connection: bool=True):
|
def __init__(self, system_id: int=1, wait_connection: bool=True, device=os.getenv('FLIX_DEVICE')):
|
||||||
if not (0 <= system_id < 256):
|
if not (0 <= system_id < 256):
|
||||||
raise ValueError('system_id must be in range [0, 255]')
|
raise ValueError('system_id must be in range [0, 255]')
|
||||||
self._setup_mavlink()
|
self._setup_mavlink()
|
||||||
self.system_id = system_id
|
self.system_id = system_id
|
||||||
self._init_state()
|
self._init_state()
|
||||||
try:
|
if device is not None:
|
||||||
# Direct connection
|
# User defined connection
|
||||||
logger.debug('Listening on port 14550')
|
logger.debug(f'Connecting to {device}')
|
||||||
self.connection: mavutil.mavfile = mavutil.mavlink_connection('udpin:0.0.0.0:14550', source_system=255) # type: ignore
|
self.connection: mavutil.mavfile = mavutil.mavlink_connection(device, source_system=255) # type: ignore
|
||||||
except OSError as e:
|
else:
|
||||||
if e.errno != errno.EADDRINUSE:
|
try:
|
||||||
raise
|
# Direct connection
|
||||||
# Port busy - using proxy
|
logger.debug('Listening on port 14550')
|
||||||
logger.debug('Listening on port 14555 (proxy)')
|
self.connection: mavutil.mavfile = mavutil.mavlink_connection('udpin:0.0.0.0:14550', source_system=255) # type: ignore
|
||||||
self.connection: mavutil.mavfile = mavutil.mavlink_connection('udpin:0.0.0.0:14555', source_system=254) # type: ignore
|
except OSError as e:
|
||||||
|
if e.errno != errno.EADDRINUSE:
|
||||||
|
raise
|
||||||
|
# Port busy - using proxy
|
||||||
|
logger.debug('Listening on port 14555 (proxy)')
|
||||||
|
self.connection: mavutil.mavfile = mavutil.mavlink_connection('udpin:0.0.0.0:14555', source_system=254) # type: ignore
|
||||||
self.connection.target_system = system_id
|
self.connection.target_system = system_id
|
||||||
self.mavlink: mavlink.MAVLink = self.connection.mav
|
self.mavlink: mavlink.MAVLink = self.connection.mav
|
||||||
self._event_listeners: Dict[str, List[Callable[..., Any]]] = {}
|
self._event_listeners: Dict[str, List[Callable[..., Any]]] = {}
|
||||||
|
|||||||
@@ -1,6 +1,6 @@
|
|||||||
[project]
|
[project]
|
||||||
name = "pyflix"
|
name = "pyflix"
|
||||||
version = "0.14"
|
version = "0.16"
|
||||||
description = "Python API for Flix drone"
|
description = "Python API for Flix drone"
|
||||||
authors = [{ name="Oleg Kalachev", email="okalachev@gmail.com" }]
|
authors = [{ name="Oleg Kalachev", email="okalachev@gmail.com" }]
|
||||||
license = "MIT"
|
license = "MIT"
|
||||||
|
|||||||