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AR.Drone: Intro

AR.Drone: Intro. Seang Cau May 18 th , 2011. AR.Drone: Intro. Purpose: To Determine Flight Capability Compare with Qball. Customization. Application Programming Interface. AR.Drone Versatility. Supports: Matlab Python C Multiple Open Source Projects Large Users Group.

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AR.Drone: Intro

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  1. AR.Drone: Intro • Seang Cau • May 18th, 2011

  2. AR.Drone: Intro • Purpose: • To Determine Flight Capability • Compare with Qball

  3. Customization

  4. Application Programming Interface

  5. AR.Drone Versatility • Supports: • Matlab • Python • C • Multiple Open Source Projects • Large Users Group

  6. AR.Drone AutoPylot Project • Website: • http://home.wlu.edu/~levys/software/ardrone_autopylot/ • This project allows auto-pilot the Parrot AR.Drone from source code written in Python, Matlab, or C on a 32-bit or 64-bit Linux Computer.

  7. AR.Drone Object Tracking • Object Tracking script readily available • uses OpenCV calls • Designed by Simon Levy • Washington and Lee University • http://www.youtube.com/user/simondlevy#p/a/u/0/_3697dtyOz4

  8. Conclusion • AR.Drone is versatile enough to be used a research platform • Source Code is open and readily available

  9. Next Steps: • Determine what the objectives are for the AR.Drone • Design a architecture that is modular to process additional imaging data or IMU data. • Implement the Design • Provide quantitative results

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