Electrostatic MEMS micromirror servo control for micro laser communication terminal

Xuan Wang, Junfeng Han, Chen Wang, Xiuqin Su, P. Liu, Yu Cao, Fan Wang, Feng Jing
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Abstract

CubeSats are gaining popularity in low-Earth orbit networks due to their low cost, fast response, and the potential and ability to form constellations. But establishing optical communication links between CubeSats is a daunting task. Laser transmission links require very strict beam pointing stability, and for small satellites with strict size, weight, and power (SWaP) requirements, it is imperative to research light and miniaturized laser communication terminals. Electrostatic micro-electromechanical systems (MEMS) mirrors are currently the most effective devices for realizing SWaP terminals in the field of optical communication. Therefore, this paper mainly studies the servo control of electrostatic MEMS mirrors for micro-miniature laser communication terminals. By using the position error feedback of the photodetector, the servo control requirements of high response speed and high robustness are realized.
微激光通信终端静电微机电系统微镜伺服控制
立方体卫星由于其低成本、快速响应以及形成星座的潜力和能力,在近地轨道网络中越来越受欢迎。但是在立方体卫星之间建立光通信链路是一项艰巨的任务。激光传输链路对光束指向稳定性要求非常严格,对于尺寸、重量和功率(SWaP)要求严格的小型卫星,研究轻量化和小型化的激光通信终端势在必行。静电微机电系统(MEMS)反射镜是目前光通信领域实现SWaP终端最有效的器件。因此,本文主要研究用于微微型激光通信终端的静电MEMS反射镜的伺服控制。利用光电探测器的位置误差反馈,实现了高响应速度和高鲁棒性的伺服控制要求。
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