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用于空间天文望远镜图像稳定系统的空间合格快速转向镜。

Space-qualified fast steering mirror for an image stabilization system of space astronomical telescopes.

作者信息

Dong Zhichao, Jiang Aimin, Dai Yanfeng, Xue Jianwei

出版信息

Appl Opt. 2018 Nov 1;57(31):9307-9315. doi: 10.1364/AO.57.009307.

Abstract

A space-qualified fast steering mirror (SQ-FSM) was designed, built, and tested at the National Astronomical Observatories of the Chinese Academy of Sciences for an image stabilization system of space astronomical telescopes, which is used for the tip-tilt correction of small jitter of the satellite platform; this achieved image stability in a closed-loop manner. Its design primarily faces four challenges involving (1) sustaining the specified sine and random vibration without launch lock, as well as shock response spectrum experiments; (2) surface form error of a clear aperture of ϕ120  mm less than 1/50λ root mean square (RMS, λ=632.8  nm) with a relatively rigid mirror support; (3) resonance frequency of at least 800 Hz and as high as possible; (4) minimum reaction force and torque in order to decrease its unfavorable influence on the satellite platform. To achieve these goals, the global optimizations and compromises have to be made throughout the design process. The study reviews the detailed design of the SQ-FSM with respect to the four challenges, mainly by keeping the mirror and its support lightweight, mirror bonding and solidification, actuator and its stiffness, flexure support of the mirror and its holder, material optimization for weight, stiffness, and coefficient of thermal expansion, as well as finite element analysis on statics and dynamics. The performances are also measured and expatiated, including the surface form, resonant frequency, tip-tilt stroke, vibration and shock response spectrum experiments, etc., which validate the performances of the SQ-FSM.

摘要

中国科学院国家天文台设计、制造并测试了一种用于空间天文望远镜图像稳定系统的空间合格快速转向镜(SQ-FSM),该系统用于卫星平台小抖动的倾斜校正,以闭环方式实现图像稳定。其设计主要面临四个挑战:(1)在不发生发射锁定的情况下承受规定的正弦和随机振动以及冲击响应谱实验;(2)在相对刚性的镜架支撑下,直径为120毫米的通光孔径的面形误差小于1/50λ均方根(RMS,λ = 632.8纳米);(3)共振频率至少为800赫兹且尽可能高;(4)最小反作用力和扭矩,以减少其对卫星平台的不利影响。为实现这些目标,必须在整个设计过程中进行全局优化和折衷。本研究回顾了SQ-FSM针对这四个挑战的详细设计,主要通过保持镜体及其支撑结构轻量化、镜体粘结与固化、致动器及其刚度、镜体及其支架的挠性支撑、材料在重量、刚度和热膨胀系数方面的优化以及静力学和动力学的有限元分析。还对其性能进行了测量和阐述,包括面形、共振频率、倾斜行程、振动和冲击响应谱实验等,这些验证了SQ-FSM的性能。

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