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

主镜像 光学 次镜 静力学 音圈 物理 抖动 倾斜(摄像机) 执行机构 有限元法 振动 计算机科学 望远镜 机械工程 声学 电磁线圈 工程类 人工智能 热力学 电信 经典力学 量子力学
作者
Zhichao Dong,Aimin Jiang,Yanfeng Dai,Jianwei Xue
出处
期刊:Applied Optics [Optica Publishing Group]
卷期号:57 (31): 9307-9307 被引量:20
标识
DOI:10.1364/ao.57.009307
摘要

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.
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