An Animated Graphics Program for Solving Star-Sensor-Based Satellite Attitude Problems

Author:

Pritt Mark D.

Publisher

Springer Japan

Reference13 articles.

1. Cassidy LW, Abreu R (1990) Star trackers for spacecraft applications. In: Proceedings of SPIE, Vol 1304. International society for optical engineering, Bellingham, WA, pp. 58–74.

2. Gottlieb DM (1978) Star identification techniques. In: Wertz JR (ed) Spacecraft attitude determination and control. D Reidel, Boston, MA, pp. 259–266.

3. Jahanchahi MH (1982) Simultaneous calibrations of Voyager celestial and inertial attitude control systems in flight. IEEE Trans Aerospace Electronic Sys AES-18(1): 21–28.

4. Jones B (1990) Attitude determination concepts for the space station Freedom. In: IEEE Plans ‘80-Position, location and navigation symposium. IEEE, Piscataway, NJ, pp. 94–101.

5. Kosik JC (1991) Star pattern identification aboard an inertially stabilized spacecraft. J Guidance Control 14 (2): 230–235.

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1. Virtual Reality As a Testbed for Star Tracker Algorithms;AIAA Scitech 2019 Forum;2019-01-06

2. Animated visualization of spin-stabilized satellite attitude data;10th Computing in Aerospace Conference;1995-03-28

3. Animated graphics program for planning satellite attitude maneuvers;9th Computing in Aerospace Conference;1993-08-22

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