Brightness Independent 4-Star Matching Algorithm for Lost-in-Space 3-Axis Attitude Acquisition

Abstract A star identification algorithm was developed for a charge-coupled device (CCD) or complementary metal-oxide-semiconductor (CMOS) autonomous star tracker to acquire 3-axis attitude information for a lost-in-space spacecraft. The algorithm took advantage of an efficient on-board database and an original “4-star matching” pattern recognition strategy to achieve fast and reliable star identification. The on-board database was composed of a brightness independent guide star catalog (mission catalog) and a K-vector star pair catalog. The star pattern recognition method involved direct location of star pair candidates and a simple array matching procedure. Tests of the algorithm with a CMOS active pixel sensor (APS) star tracker result in a 99.9% success rate for star identification for lost-in-space 3-axis attitude acquisition when the angular measurement accuracy of the star tracker is at least 0.01°. The brightness independent algorithm requires relatively higher measurement accuracy of the star apparent positions that can be easily achieved by CCD or CMOS sensors along with subpixel centroiding techniques.

[1]  Carl Christian Liebe,et al.  New generation of autonomous star trackers , 1997, Remote Sensing.

[2]  Eric R. Fossum,et al.  Application of the active-pixel-sensor concept to guidance and navigation , 1993, Defense, Security, and Sensing.

[3]  C. Liebe Star trackers for attitude determination , 1995 .

[4]  Bedabrata Pain,et al.  Active pixel sensor (APS) based star tracker , 1998, 1998 IEEE Aerospace Conference Proceedings (Cat. No.98TH8339).

[5]  Daniele Mortari,et al.  Search-Less Algorithm for Star Pattern Recognition , 1997 .

[6]  Timothy A. Clarke,et al.  Comparison of some techniques for the subpixel location of discrete target images , 1994, Other Conferences.

[7]  C.C. Liebe,et al.  Micro APS based star tracker , 2002, Proceedings, IEEE Aerospace Conference.

[8]  Zheng You,et al.  An APS-based autonomous star tracker , 2005, SPIE/COS Photonics Asia.

[9]  Kenneth Kreutz-Delgado,et al.  Evaluation of Star Identification Techniques , 1997 .