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用于全天候星敏感器的视场选通成像系统中的电磁驱动微快门阵列

An Electromagnetic-Driven Microshutter Array in a Field-of-View Gated Image System for All-Time Star Sensors.

作者信息

Fang Liang, Wang Weimin, Wang Qiang, Tan Shuliang, Zhang Hui, Zhao Rujin, Liu Enhai

机构信息

Institute of Optics and Electronics, Chinese Academy of Sciences, Chengdu 610209, China.

Key Laboratory of Science and Technology on Space Optoelectronic Precision Measurement, Chinese Academy of Sciences, Chengdu 610209, China.

出版信息

Micromachines (Basel). 2023 Feb 15;14(2):452. doi: 10.3390/mi14020452.

Abstract

Aiming at the application requirements of a field of view (FOV) gated imaging system for all-time star sensors, a key device of a microshutter array with large unit size, high duty cycle, and fast response speed based on the electromagnetic actuation is designed. The proposed microshutter array adopts the principle that the current-carrying coil is subjected to the magnetic force in the magnetic field. The coil element is deflected by the loading current and acts as a light barrier in realizing the optical switch function. The effects of the coil element parameters on the magnetic force torque, torsion beam resistance torque, and switch response time are analyzed, and the structural parameters of the coil element are determined. A sample of the proposed microshutter array based on the electromagnetic actuation with a 4-mm period and a 2.8-mm aperture is fabricated and tested. The test results demonstrate the good switching function of the proposed microshutter array and show that the switch response time of the microshutter element is approximately 2.5 ms. This proposed microshutter array is used to gate an instantaneous small FOV to suppress the sky's background radiation and make a FOV-gated imaging system realize the multi-stars detection by switching the gated FOV rapidly. This will solve the problem that only one star can be detected within the FOV by a traditional all-time star tracker and promote the all-time star sensor to realize star pattern recognition and autonomous astronomical navigation in the daytime.

摘要

针对全天候星敏感器视场(FOV)选通成像系统的应用需求,设计了一种基于电磁驱动的大单元尺寸、高占空比、快速响应速度的微快门阵列关键器件。所提出的微快门阵列采用载流线圈在磁场中受磁力的原理。线圈元件在加载电流作用下发生偏转,并在实现光开关功能时起到光阑作用。分析了线圈元件参数对磁力转矩、扭梁阻力矩和开关响应时间的影响,并确定了线圈元件的结构参数。制作并测试了基于电磁驱动的周期为4mm、孔径为2.8mm的微快门阵列样品。测试结果表明所提出的微快门阵列具有良好的开关功能,且微快门元件的开关响应时间约为2.5ms。该微快门阵列用于选通瞬时小视场以抑制天空背景辐射,并使视场选通成像系统通过快速切换选通视场实现多星探测。这将解决传统全天候星跟踪器在视场内只能检测到一颗星的问题,并推动全天候星敏感器在白天实现星图识别和自主天文导航。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d7be/9961157/8b8f82fa52a9/micromachines-14-00452-g001.jpg

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