A Vision-Based Automatic Landing Method for Fixed-Wing UAVs

Author:

Huh Sungsik,Shim David Hyunchul

Publisher

Springer Science and Business Media LLC

Subject

Electrical and Electronic Engineering,Artificial Intelligence,Industrial and Manufacturing Engineering,Mechanical Engineering,Control and Systems Engineering,Software

Reference9 articles.

1. Williams, K.W.: A summary of unmanned aircraft accident/incident data: human factors implications. U. S. Department of Transportation Report, No. DOT/FAA/AM—04/24 (2004)

2. Manning, S.D., Rash, C.E., LeDuc, P.A., Noback R.K., McKeon, J.: The role of human causal factors in U. S. army unmanned aerial vehicle accidents. USAARL Report No. 2004—11 (2004)

3. Loegering, G.: Landing dispersion results—global Hawk auto-land system. In: AIAA’s 1st Technical Conference and Workshop on Unmanned Aerial Vehicles (2002)

4. Saripalli, S., Montgomery, J.F., Sukhatme, G.S.: Vision-based autonomous landing of an unmanned aerial vehicle. In: Proceedings of the IEEE International Conference on Robotics & Automation (2002)

5. Bourquardez, O., Chaumette, F.: Visual servoing of an airplane for auto-landing. In: Proceedings of the 2007 IEEE/RSJ International Conference on Intelligent Robots and Systems (2007)

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