Path: Top -> Journal -> Telkomnika -> 2016 -> Vol 14, No 3A
Relative Position Error Analysis for Mars Probes
Relative Position Error Analysis for Mars Probes
Journal from gdlhub / 2016-11-11 06:06:17Oleh : Shaowu Chen, Gang Ji, Dezhen Xu, Haitao Li, Guangliang Dong, Telkomnika
Dibuat : 2016-09-01, dengan 1 file
Keyword : Mars exploration; same beam interferometry; covariance model; relative position error.
Url : http://journal.uad.ac.id/index.php/TELKOMNIKA/article/view/4389
The relative angular position error covariance model of two deep space probes is propagated based on the error covariance analysis method, and is used for the relative angular position error analysis for multiple deep space probes. The differential time delay model of Same Beam Interferometry (SBI) about the relative right ascension and relative declination of two deep space probes is established, and the information matrixes of two ground-based baseline differential time delay measurements are obtained. The relative angular position error covariance is established, and the influence of measurement error and measurement geometry on relative angular position error is analyzed. The results show that in appropriate measurement geometry the relative right ascension and relative declination error of Mars probe are in order of 0.1nrad when the measurement error is in order of pico-second.
Deskripsi Alternatif :The relative angular position error covariance model of two deep space probes is propagated based on the error covariance analysis method, and is used for the relative angular position error analysis for multiple deep space probes. The differential time delay model of Same Beam Interferometry (SBI) about the relative right ascension and relative declination of two deep space probes is established, and the information matrixes of two ground-based baseline differential time delay measurements are obtained. The relative angular position error covariance is established, and the influence of measurement error and measurement geometry on relative angular position error is analyzed. The results show that in appropriate measurement geometry the relative right ascension and relative declination error of Mars probe are in order of 0.1nrad when the measurement error is in order of pico-second.
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