传感器测量基准误差对卫星定姿精度的影响分析

Y. Jiao, Jiongqi Wang, Haiyin Zhou
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引用次数: 2

摘要

星敏感器和陀螺仪在卫星姿态确定系统中有着广泛的应用。这些传感器产生的基准误差对姿态确定的精度影响很大。为了分析这种影响,本文首先建立了具有基准误差的传感器测量模型。然后,利用最小方差估计原理分析了星敏感器和陀螺仪基准误差的影响。最后,通过仿真确定了允许的基准误差范围。实验结果表明,星敏感器的基准误差对姿态确定精度有显著影响。而陀螺基准误差的影响相对较小,特别是当陀螺基准误差在预定范围内时。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence analysis of sensors' measurement datum error on satellite attitude determination accuracy
Star sensors and gyros are widely used in satellite attitude determination system. Datum error, induced by using these sensors, has great influence on the accuracy of attitude determination. To analyze this influence, we first construct sensors' measurement model with datum error in this paper. Then, the influences caused by star sensors' and gyros' datum errors are analyzed by employing minimum variance estimation principle. Finally, the permissible datum errors' ranges are determined by simulation. Experimental results show that star sensors' datum error has significant influence on attitude determination accuracy. Influence of gyros' datum error, however, has relatively smaller effect, especially when the datum error of gyros' is within the predetermined range.
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