Title :
Rapid Star Tracking Algorithm for Star Sensor
Author :
Jiang, Jie ; Zhang, Guang Jun ; Wei, Xinguo ; Li, Xlao
Author_Institution :
Beijing Univ. of Aeronaut. & Astronaut., Beijing, China
Abstract :
A rapid star tracking algorithm is proposed. In order to speed up the tracking, three techniques includng parallel star centroiding, sorting, and star catalogue partition are designed for three time-consuming portions in tracking algorithms. The parallel star centroiding is implemented with Field Programmable Gate Array (FPGA) which avoid image storage and transmission. Update rate of star sensor is improved. Sorting star coordinates in star image plane, and then matching, which avoid matching between stars with a long distance in image plane. Star catalogue partition divides the celestial sphere into many small partitions. In star mapping, guide stars are searched in the partitions near the direction of star sensor´s boresight is not in the whole celestial sphere and therefore reduced the total number of searched guide stars. The software and hardware performance of tracking algorithms are simulated. Tracking robustness and the tracking speed comparison are tested in the software simulation. In hardware tests, the tracking time in every step is obtained.
Keywords :
aerospace instrumentation; attitude measurement; field programmable gate arrays; star trackers; field programmable gate array; hardware tests; image storage; rapid star tracking algorithm; software simulation; star catalogue partition; star coordinates; star image plane; star sensor; time-consuming portions; tracking robustness; tracking speed comparison; Algorithm design and analysis; Field programmable gate arrays; Hardware; Image storage; Partitioning algorithms; Robustness; Software algorithms; Software performance; Software testing; Sorting;
Journal_Title :
Aerospace and Electronic Systems Magazine, IEEE
DOI :
10.1109/MAES.2009.5282286