DocumentCode :
2592574
Title :
Transfer orbit stage gyrocompass alignment algorithm in a twist and sway environment for Mars Observer Mission on commercial Titan
Author :
Reddy, Narotham S. ; Murray, Jonathan
Author_Institution :
Martin Marietta Astronaut. Group, Denver, CO, USA
fYear :
1990
fDate :
15-18 Oct 1990
Firstpage :
153
Lastpage :
158
Abstract :
A robust numeric gyrocompass alignment algorithm, to meet the initial alignment requirement for the transfer orbit stage for the Mars Observer Mission has been developed. The algorithm contains a coarse alignment algorithm, a local level navigator which continuously propagates the attitude and generates the accumulated linear velocity error at 50 Hz, and a Kalman filter which corrects the attitude and accumulated linear velocity errors at 1 Hz. The gyrocompass algorithm performance over 7200 seconds of time simulation in west, north, and down axes is presented. The coarse alignment was performed for 30 seconds, and then the fine alignment was started with the coarse alignment matrix as the initial condition. From the simulation results, it was observed that the gyrocompass reduced the down alignment error to less than 0.5° (1800 arc secs) within minutes. After 20 minutes, the reduction rate in the down alignment error became small, and then it finally settled to a steady-state value. The west, north, and down axes error statistical information indicates that the numeric gyrocompass algorithm meets the present requirements with sufficient margins
Keywords :
Kalman filters; aerospace computer control; aerospace computing; aerospace instrumentation; aerospace simulation; compasses; computerised signal processing; error correction; gyroscopes; inertial navigation; Kalman filter; Mars Observer Mission; Titan; accumulated linear velocity error; aerospace instrumentation; attitude; coarse alignment algorithm; computerised signal processing; fine alignment; local level navigator; numeric gyrocompass alignment algorithm; orbit stage; simulation; sway; twist; Computer errors; Earth; Gravity; Mars; Navigation; Reluctance motors; Ring lasers; Satellites; Space shuttles; Space vehicles;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Digital Avionics Systems Conference, 1990. Proceedings., IEEE/AIAA/NASA 9th
Conference_Location :
Virginia Beach, VA
Type :
conf
DOI :
10.1109/DASC.1990.111278
Filename :
111278
Link To Document :
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