Unable to log in or get member pricing? Having trouble changing your password?

Please review our Frequently Asked Questions for complete information on these and other common situations.
 

Vertical Flight Library & Store

Visual Detection of Moving Ground Obstacles for Full-Size Autonomous Aircraft Landing

Vladimir Brajovic, Chenhao Han, Lucas de la Garza, Near Earth Autonomy

May 14, 2018

https://doi.org/10.4050/F-0074-2018-12924

Abstract:
Full-size autonomous rotorcraft flying multi-hop missions must be able to react quickly to unsafe landing conditions, such as moving ground vehicle activity in the landing zone (LZ). In this paper, an algorithm is presented which detects moving ground vehicles from distances of 120 m to 500 m (394 ft to 1640 ft), using monocular visual-spectrum video and pose information. The approach requires few assumptions on the object being detected (contiguous appearance and discernible contrast against the ground), allowing for detection of different sizes and shapes of moving objects. The performance of the algorithm is evaluated over a dataset of 76 real approaches, analyzing the true and false positive rates per-approach and per-frame. The algorithm is found to correctly detect hazardous landing conditions in 41/41 approaches to moving-vehicle-occupied LZs, and falsely declare unsafe landing conditions in 2/35 approaches to clear LZs.


Visual Detection of Moving Ground Obstacles for Full-Size Autonomous Aircraft Landing

  • Presented at Forum 74
  • 7 pages
  • SKU # : F-0074-2018-12924
  • Unmanned VTOL

  • Your Price : $30.00
  • Join or log in to receive the member price of $15.00!


VFS member?
Don't add this to your cart just yet!
Be sure to log in first to receive the member price of $15.00!

 
Add To Cart

Reward Value:
(60) Member Points

Visual Detection of Moving Ground Obstacles for Full-Size Autonomous Aircraft Landing

Authors / Details:
Vladimir Brajovic, Chenhao Han, Lucas de la Garza, Near Earth Autonomy