bresch a2260e53da ekf2: replace yaw failure detection criteria
The existing logic using the angle between velocity vectors failed to
determine a yaw failure in practice because the state velocity is often
too small compared to its uncertainty to be used. In all the failures
reported, the yaw emergency estimator converged properly and yaw reset
would have fixed the issue.
A much simpler check using the yaw difference between the main EKF
and the emergency estimator is now used to tell if the vel/pos update
failure is most likely caused by a wrong heading.
2022-01-20 11:54:24 +01:00
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2020-01-13 14:07:03 -05:00
2022-01-14 22:05:53 +01:00
2017-07-30 19:18:49 +02:00
2020-04-29 22:49:30 +01:00
2017-01-02 10:14:41 +01:00
2022-01-17 08:10:57 +01:00
2022-01-07 10:17:12 -05:00
2019-10-07 12:04:50 +02:00

PX4 Drone Autopilot

Releases DOI

Nuttx Targets SITL Tests

Slack

This repository holds the PX4 flight control solution for drones, with the main applications located in the src/modules directory. It also contains the PX4 Drone Middleware Platform, which provides drivers and middleware to run drones.

PX4 is highly portable, OS-independent and supports Linux, NuttX and MacOS out of the box.

Building a PX4 based drone, rover, boat or robot

The PX4 User Guide explains how to assemble supported vehicles and fly drones with PX4. See the forum and chat if you need help!

Changing code and contributing

This Developer Guide is for software developers who want to modify the flight stack and middleware (e.g. to add new flight modes), hardware integrators who want to support new flight controller boards and peripherals, and anyone who wants to get PX4 working on a new (unsupported) airframe/vehicle.

Developers should read the Guide for Contributions. See the forum and chat if you need help!

Weekly Dev Call

The PX4 Dev Team syncs up on a weekly dev call.

Note

The dev call is open to all interested developers (not just the core dev team). This is a great opportunity to meet the team and contribute to the ongoing development of the platform. It includes a QA session for newcomers. All regular calls are listed in the Dronecode calendar.

Maintenance Team

See also maintainers list (px4.io) and the contributors list (Github).

Supported Hardware

This repository contains code supporting Pixhawk standard boards (best supported, best tested, recommended choice) and proprietary boards.

Pixhawk Standard Boards

Manufacturer and Community supported

Additional information about supported hardware can be found in PX4 user Guide > Autopilot Hardware.

Project Roadmap

A high level project roadmap is available here.

S
Description
a mirror of official PX4-Autopilot
Readme BSD-3-Clause
587 MiB
Languages
C++ 51.2%
C 38.5%
CMake 4.7%
Python 3.9%
Shell 1.3%
Other 0.1%