An AUTONOMOUS STAR IDENTIFICATION ALGORITHM BASED ON THE DIRECTED CIRCULARITY PATTERN

The accuracy of the angular distance may decrease due to lots of factors, such as the parameters of the stellar camera aren't calibrated on-orbit, or the location accuracy of the star image points is low, and so on, which can cause the low success rates of star identification. A robust directed...

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Main Authors: J. Xie, X. Tang, W. Jiang, X. Fu
Format: Article
Language:English
Published: Copernicus Publications 2012-07-01
Series:The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences
Online Access:https://www.int-arch-photogramm-remote-sens-spatial-inf-sci.net/XXXIX-B1/333/2012/isprsarchives-XXXIX-B1-333-2012.pdf
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spelling doaj-3bc5b4bceb1a416d893e9636f975ae3c2020-11-24T20:50:42ZengCopernicus PublicationsThe International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences1682-17502194-90342012-07-01XXXIX-B133333810.5194/isprsarchives-XXXIX-B1-333-2012An AUTONOMOUS STAR IDENTIFICATION ALGORITHM BASED ON THE DIRECTED CIRCULARITY PATTERNJ. Xie0X. Tang1W. Jiang2X. Fu3Satellite Surveying and Mapping Application Centre, Lianhuachi West Road 28, Beijing, P.R.ChinaSatellite Surveying and Mapping Application Centre, Lianhuachi West Road 28, Beijing, P.R.ChinaState Key Laboratory of Information Engineering in Surveying, Mapping and Remote Sensing, Wuhan University, Luoyu Road 129, Wuhan, P.R.ChinaSatellite Surveying and Mapping Application Centre, Lianhuachi West Road 28, Beijing, P.R.ChinaThe accuracy of the angular distance may decrease due to lots of factors, such as the parameters of the stellar camera aren't calibrated on-orbit, or the location accuracy of the star image points is low, and so on, which can cause the low success rates of star identification. A robust directed circularity pattern algorithm is proposed in this paper, which is developed on basis of the matching probability algorithm. The improved algorithm retains the matching probability strategy to identify master star, and constructs a directed circularity pattern with the adjacent stars for unitary matching. The candidate matching group which has the longest chain will be selected as the final result. Simulation experiments indicate that the improved algorithm has high successful identification and reliability etc, compared with the original algorithm. The experiments with real data are used to verify it.https://www.int-arch-photogramm-remote-sens-spatial-inf-sci.net/XXXIX-B1/333/2012/isprsarchives-XXXIX-B1-333-2012.pdf
collection DOAJ
language English
format Article
sources DOAJ
author J. Xie
X. Tang
W. Jiang
X. Fu
spellingShingle J. Xie
X. Tang
W. Jiang
X. Fu
An AUTONOMOUS STAR IDENTIFICATION ALGORITHM BASED ON THE DIRECTED CIRCULARITY PATTERN
The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences
author_facet J. Xie
X. Tang
W. Jiang
X. Fu
author_sort J. Xie
title An AUTONOMOUS STAR IDENTIFICATION ALGORITHM BASED ON THE DIRECTED CIRCULARITY PATTERN
title_short An AUTONOMOUS STAR IDENTIFICATION ALGORITHM BASED ON THE DIRECTED CIRCULARITY PATTERN
title_full An AUTONOMOUS STAR IDENTIFICATION ALGORITHM BASED ON THE DIRECTED CIRCULARITY PATTERN
title_fullStr An AUTONOMOUS STAR IDENTIFICATION ALGORITHM BASED ON THE DIRECTED CIRCULARITY PATTERN
title_full_unstemmed An AUTONOMOUS STAR IDENTIFICATION ALGORITHM BASED ON THE DIRECTED CIRCULARITY PATTERN
title_sort autonomous star identification algorithm based on the directed circularity pattern
publisher Copernicus Publications
series The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences
issn 1682-1750
2194-9034
publishDate 2012-07-01
description The accuracy of the angular distance may decrease due to lots of factors, such as the parameters of the stellar camera aren't calibrated on-orbit, or the location accuracy of the star image points is low, and so on, which can cause the low success rates of star identification. A robust directed circularity pattern algorithm is proposed in this paper, which is developed on basis of the matching probability algorithm. The improved algorithm retains the matching probability strategy to identify master star, and constructs a directed circularity pattern with the adjacent stars for unitary matching. The candidate matching group which has the longest chain will be selected as the final result. Simulation experiments indicate that the improved algorithm has high successful identification and reliability etc, compared with the original algorithm. The experiments with real data are used to verify it.
url https://www.int-arch-photogramm-remote-sens-spatial-inf-sci.net/XXXIX-B1/333/2012/isprsarchives-XXXIX-B1-333-2012.pdf
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