False Star Filtering for Star Sensor Based on Angular Distance Tracking
The reliability of star sensor in a harsh environment has recently become a research hotspot. In some harsh environment such as plume interference, a large number of false stars can be observed, leading to failure in star identification. In this paper, we propose a false star filtering algorithm, wh...
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doaj-4150a71287204cb3a29b8e24d0598af62021-03-29T22:56:45ZengIEEEIEEE Access2169-35362019-01-017624016241110.1109/ACCESS.2019.29159768712453False Star Filtering for Star Sensor Based on Angular Distance TrackingGangyi Wang0https://orcid.org/0000-0001-7685-3083Wenchao Lv1Jian Li2https://orcid.org/0000-0001-8721-7461Xinguo Wei3School of Instrument Science and Opto-Electronics Engineering, Beihang University, Beijing, ChinaSchool of Instrument Science and Opto-Electronics Engineering, Beihang University, Beijing, ChinaSchool of Instrument Science and Opto-Electronics Engineering, Beihang University, Beijing, ChinaSchool of Instrument Science and Opto-Electronics Engineering, Beihang University, Beijing, ChinaThe reliability of star sensor in a harsh environment has recently become a research hotspot. In some harsh environment such as plume interference, a large number of false stars can be observed, leading to failure in star identification. In this paper, we propose a false star filtering algorithm, which can be used as a preprocessing algorithm for any existing star identification algorithm. By utilizing the difference between the motion of false stars and true stars, the algorithm performs angular distance tracking and star voting on multiple consecutive frames of star images and achieves false star filtering. The software simulation results show that for the star images containing more than 700 false stars, the algorithm is able to find out all true stars in less than 10 frames, and the success rate of the algorithm remains high when the star sensor rotates at up to 1°/s. The algorithm is also implemented on an existing star senor and evaluated with star images generated by a dynamic star simulator. The experimental results indicate that with the help of the proposed algorithm, the robustness of a normal star identification algorithm can be significantly improved.https://ieeexplore.ieee.org/document/8712453/Star sensorharsh environmentfalse star filteringstar identification |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Gangyi Wang Wenchao Lv Jian Li Xinguo Wei |
spellingShingle |
Gangyi Wang Wenchao Lv Jian Li Xinguo Wei False Star Filtering for Star Sensor Based on Angular Distance Tracking IEEE Access Star sensor harsh environment false star filtering star identification |
author_facet |
Gangyi Wang Wenchao Lv Jian Li Xinguo Wei |
author_sort |
Gangyi Wang |
title |
False Star Filtering for Star Sensor Based on Angular Distance Tracking |
title_short |
False Star Filtering for Star Sensor Based on Angular Distance Tracking |
title_full |
False Star Filtering for Star Sensor Based on Angular Distance Tracking |
title_fullStr |
False Star Filtering for Star Sensor Based on Angular Distance Tracking |
title_full_unstemmed |
False Star Filtering for Star Sensor Based on Angular Distance Tracking |
title_sort |
false star filtering for star sensor based on angular distance tracking |
publisher |
IEEE |
series |
IEEE Access |
issn |
2169-3536 |
publishDate |
2019-01-01 |
description |
The reliability of star sensor in a harsh environment has recently become a research hotspot. In some harsh environment such as plume interference, a large number of false stars can be observed, leading to failure in star identification. In this paper, we propose a false star filtering algorithm, which can be used as a preprocessing algorithm for any existing star identification algorithm. By utilizing the difference between the motion of false stars and true stars, the algorithm performs angular distance tracking and star voting on multiple consecutive frames of star images and achieves false star filtering. The software simulation results show that for the star images containing more than 700 false stars, the algorithm is able to find out all true stars in less than 10 frames, and the success rate of the algorithm remains high when the star sensor rotates at up to 1°/s. The algorithm is also implemented on an existing star senor and evaluated with star images generated by a dynamic star simulator. The experimental results indicate that with the help of the proposed algorithm, the robustness of a normal star identification algorithm can be significantly improved. |
topic |
Star sensor harsh environment false star filtering star identification |
url |
https://ieeexplore.ieee.org/document/8712453/ |
work_keys_str_mv |
AT gangyiwang falsestarfilteringforstarsensorbasedonangulardistancetracking AT wenchaolv falsestarfilteringforstarsensorbasedonangulardistancetracking AT jianli falsestarfilteringforstarsensorbasedonangulardistancetracking AT xinguowei falsestarfilteringforstarsensorbasedonangulardistancetracking |
_version_ |
1724190417808785408 |