3D Robotics

ArduPilot (Legacy) main page

 

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[This original ArduPilot board, now called the "Legacy ArduPilot" is no longer produced or officially supported by the DIY Drones dev team, and this page is maintained just for historic reasons. However, there are still many users of it out there and it still works fine. The user group for Legacy ArduPilot users, for both thermopile and IMU use, is here.]

 

ArduPilot is a full-featured autopilot based on the Arduino open-source hardware platform. It uses infrared (thermopile) sensors or an IMU for stabilization and GPS for navigation. It is the autopilot used to win the 2009 Sparkfun Autonomous Vehicle Competition.

The hardware is available from Sparkfun for $24.95. An expansion board ("Shield") kits that includes an airspeed sensor, a 3.3v power regulator for 3.3v GPS modules and other sensors and cables and connectors for easy attachment of the XY and Z sensors, is available from our own store for $57.20.

 

User f

ArduPilot features include:

  • Can be used for an autonomous aircraft, car or boat.
  • Built-in hardware failsafe that uses a separate circuit (multiplexer chip and ATTiny processor) to transfer control from the RC system to the autopilot and back again. Includes ability to reboot the main processor in mid-flight.
  • Multiple 3D waypoints (limited only by memory)
  • Altitude controlled with the elevator and throttle
  • Comes with a 6-pin GPS connector for the 4Hz uBlox5 or 1hz EM406 GPS modules.
  • Has six spare analog inputs (with ADC on each) and six spare digital input/outputs to add additional sensors
  • Supports addition of wireless modules for real-time telemetry
  • Based on a 16MhZ Atmega328 processor. Total onboard processing power aprox 24 MIPS.
  • Very small: 30mm x 47mm
  • Can be powered by either the RC receiver or a separate battery
  • Four RC-in channels (plus the autopilot on/off channel) can be processed by the autopilot. Autopilot can also control four channels out.
  • LEDs for power, failsafe (on/off), status and GPS (satellite lock).


Resources:

ArduPilot requires the free Arduino IDE to edit and upload the code to the ArduPilot board.



The code is currently optimized for the Mutiplex EasyStar three-channel powered glider and FMA sensors, but can be modified for other aircraft and sensors. It uses the rudder/ailerons and elevator to maintain level flight and navigate to GPS waypoints. It supports a desktop setup utility and ground station software. It also includes a "fly-by-wire" mode that simply stabilizes RC flight. The main code is ArduPilot2.x.zip in the download section of our Google Code repository, where x is the latest version.

What you need to make a fully-functional autopilot:


Open source extras:

  • If you want to build your own board from scratch, the necessary files and component lists are here.
  • [Note: you shouldn't need this, since this code is loaded on the ArduPilot board at the factory] Latest multiplexer code (for the board's second processor, an Attiny, which runs the failsafe system) is here.
    Instructions for loading this code are here.



Recommended UAV setup:

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Airframe option one: Hobbico SuperStar (49" wingspan, $95, shown above). This is an inexpensive, good flying high-wing trainer with ailerons. It can be hand launched in a park or take off from a runway, and replacement parts are readily available in case of a crash. If you want much better performance with this aircraft, you can upgrade it to a brushless motor, speed controller and a LiPo battery. [If you don't already have one, you'll also need a balancing charger and power supply.] Note: any stable aircraft with both ailerons (for stabilization) and rudder (for navigation) can work, so feel free to experiment with what you've got.

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Airframe option two (recommended for ArduPilot 2.x): EasyStar (shown above). Performance can be improved with the modifications described in this post.

You'll also need:

  • A six or seven channel RC transmitter and receiver, with at least one toggle switch (ideally three-position but two-position will work, too, although you will have to mix channels to have access to both autopilot modes in the air), such as the Futaba 7C.
  • Some servos (at least three for ArduPilot 1.0; at least two for ArduPilot 2.x) and at least three female-to-female servo cables to connect the RC receiver to ArduPilot.


Cool optional extras for your UAV:

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Comments

  • Developer
    Earl,

    I suggest you remove all the foam inside the airframe (i mean foam between compartments) so you can place a lot of stuff inside the belly. Now because the nose of my easystar (the real one) is very heavy i had to put the lipo between the nose and the wings, exactly between the servos and for that you need to remove all the foam you can around... Just check it...
  • I went to Albuquerque today (75 miles one way) and I found a good hobby shop. I was quite surprised when I found an EZStar in stock for $65 and I didn't have shipping and waiting to worry about. So....I now have an EZStar to go with all the ardupilot stuff and a 900mhz camera system. I think it is about time I bite the bullet and get too it.
    I should be ready to fly Sunday or Monday. Before I put the EZStar together, does anyone have any suggestions before I build it ? I am aware there is some places on the web about putting one together with improvements!
    Now if the AP can fly it......because I can't fly....we will be very happy !
    Give me suggestions before I get the glue out !
    Earl
    PS Jordi, I like your new avatar ! Looks more like you !
  • That will do the job for sure.
    I found also this.
    http://www.firmtronics.com/rc-products/digimix-3.php
    Its free programmable.
  • 3D Robotics
    Sure. Just solder a jumper wire between the two signal pins.
  • Hi Chris,

    Thanks for your reply.
    No problem, aileron and elevator are sufficient i believe.
    Is there any way to copy a servo to output 4? To avoid a Y cable (V-tail or aileron)

    Regards, Michel
    reply.no is parked
  • 3D Robotics
    Michel,

    That's not the way the current ArduPilot works--we use the same roll channel (either ailerons OR rudder) for stabilization AND navigation. If you want to separate the two functions, I suggest you use ArduPilot 1.0 and a FMA Co-Pilot for stabalization.
  • Hello fellow UAV pilots,

    I am just started with Ardupilot and like to setup a Easyglider.
    I like to create a H file with aileron and altitude stabilization, and rudder for steering to waypoints.
    On the Ardupilot PCB are 4 servo outputs.

    Happy flights.

    Michel Lubbers
    The Netherlands
  • @Danilo: Mine have always worked, if you still need help: 81259599, seu ddd.
  • Developer
    Zero is "Cero" and Null is "Nulo" from "Anular". Several words in English and Spanish are the same at least are written similar.
  • Developer
    New avatar too.
This reply was deleted.