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减少增强型高精度星跟踪器中光纤面板引起的系统质心误差。

Reducing systematic centroid errors induced by fiber optic faceplates in intensified high-accuracy star trackers.

作者信息

Xiong Kun, Jiang Jie

机构信息

Key Laboratory of Precision Opto-Mechatronics Technology, Ministry of Education, School of Instrumentation Science and Opto-Electronics Engineering, Beijing University of Aeronautics and Astronautics (BUAA), Beijing 100191, China.

出版信息

Sensors (Basel). 2015 May 26;15(6):12389-409. doi: 10.3390/s150612389.

Abstract

Compared with traditional star trackers, intensified high-accuracy star trackers equipped with an image intensifier exhibit overwhelmingly superior dynamic performance. However, the multiple-fiber-optic faceplate structure in the image intensifier complicates the optoelectronic detecting system of star trackers and may cause considerable systematic centroid errors and poor attitude accuracy. All the sources of systematic centroid errors related to fiber optic faceplates (FOFPs) throughout the detection process of the optoelectronic system were analyzed. Based on the general expression of the systematic centroid error deduced in the frequency domain and the FOFP modulation transfer function, an accurate expression that described the systematic centroid error of FOFPs was obtained. Furthermore, reduction of the systematic error between the optical lens and the input FOFP of the intensifier, the one among multiple FOFPs and the one between the output FOFP of the intensifier and the imaging chip of the detecting system were discussed. Two important parametric constraints were acquired from the analysis. The correctness of the analysis on the optoelectronic detecting system was demonstrated through simulation and experiment.

摘要

与传统星敏感器相比,配备图像增强器的增强型高精度星敏感器具有极其优越的动态性能。然而,图像增强器中的多光纤面板结构使星敏感器的光电探测系统变得复杂,可能会导致相当大的系统质心误差和较差的姿态精度。分析了在光电系统的整个检测过程中与光纤面板(FOFP)相关的系统质心误差的所有来源。基于在频域中推导出的系统质心误差的一般表达式和光纤面板调制传递函数,得到了描述光纤面板系统质心误差的精确表达式。此外,还讨论了减小光学透镜与增强器输入光纤面板之间、多个光纤面板之间以及增强器输出光纤面板与检测系统成像芯片之间的系统误差。通过分析获得了两个重要的参数约束。通过仿真和实验验证了光电探测系统分析的正确性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d8ed/4507612/7aad52f8853d/sensors-15-12389-g001.jpg

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