TY - JOUR
T1 - Star Identification Algorithm Based on K-L Transformation and Star Walk Formation
AU - Zhao, Yang
AU - Wei, Xinguo
AU - Li, Jian
AU - Wang, Gangyi
N1 - Publisher Copyright:
© 2016 IEEE.
PY - 2016/7/1
Y1 - 2016/7/1
N2 - For star sensors, the difficulty in realizing attitude determination lies in accurate and robust star identification algorithms. In this paper, an efficient star identification algorithm is described, which is fast, robust, and consumes small memory resources. It mainly involves two steps: the dedicated Karhunen-Loève (K-L) transformation step and the star walk formation step. Once several pattern triangles for pole stars are built, the K-L transformation is performed to calculate the K-L values to match several rough correspondences from a predefined database. Star walks are then formed among the candidate stars using the neighboring star table, which indicates each star's geometric distribution in the neighborhood, until a unique match is found. Our algorithm can also complete an efficient verification procedure based on a fast triangle algorithm, since stars' surrounding information can be acquired from the neighboring star table. The simulation results compare favorably with two published algorithms, and the approach has been implemented on actual star images.
AB - For star sensors, the difficulty in realizing attitude determination lies in accurate and robust star identification algorithms. In this paper, an efficient star identification algorithm is described, which is fast, robust, and consumes small memory resources. It mainly involves two steps: the dedicated Karhunen-Loève (K-L) transformation step and the star walk formation step. Once several pattern triangles for pole stars are built, the K-L transformation is performed to calculate the K-L values to match several rough correspondences from a predefined database. Star walks are then formed among the candidate stars using the neighboring star table, which indicates each star's geometric distribution in the neighborhood, until a unique match is found. Our algorithm can also complete an efficient verification procedure based on a fast triangle algorithm, since stars' surrounding information can be acquired from the neighboring star table. The simulation results compare favorably with two published algorithms, and the approach has been implemented on actual star images.
KW - K-L transformation
KW - Star sensor
KW - neighboring star table
KW - star identification
UR - https://www.scopus.com/pages/publications/84976292844
U2 - 10.1109/JSEN.2016.2553245
DO - 10.1109/JSEN.2016.2553245
M3 - 文章
AN - SCOPUS:84976292844
SN - 1530-437X
VL - 16
SP - 5202
EP - 5210
JO - IEEE Sensors Journal
JF - IEEE Sensors Journal
IS - 13
M1 - 7451198
ER -