Using semi-blind source separation in multi-sensor fault location of satellite attitude determination system

Zhizhou Li, Guohua Liu, Rui Zhang, Zhencai Zhu
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Abstract

Fault location is important for attitude determination (AD) of satellite which provides better services without any degradation. Firstly, the assumption of statistically independent between 3-axis Euler angles and statistically independent between Euler angles and faults are proposed in this paper. Also it is assumed the fault appears only in one group of sensors and the fault is additive. With two difference groups of sensor measuring the Euler angles of satellite, the link between fault location and blind source separation (BSS) is established. Secondly, independent component analysis(ICA) algorithm is used for BSS. Finally, using semi-blind source separation (SBSS) method with correlation coefficient and pattern recognition of the mixed matrix, ambiguities of BSS are overcome. The numerical simulation shows this method can fulfill fault location and extraction of the attitude AD system.
半盲源分离在卫星姿态确定系统多传感器故障定位中的应用
故障定位对于卫星姿态确定具有重要的意义,从而保证卫星姿态确定的服务质量。首先,提出了三轴欧拉角和欧拉角与故障统计无关的假设;同时假定故障只出现在一组传感器中,且故障是可加性的。利用测量卫星欧拉角的两组不同传感器,建立了故障定位与盲源分离(BSS)的联系。其次,采用独立分量分析(ICA)算法进行BSS分析。最后,采用结合相关系数和混合矩阵模式识别的半盲源分离(SBSS)方法克服了半盲源分离的模糊性。数值仿真结果表明,该方法可以实现姿态自适应系统的故障定位与提取。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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