角镜平动式干涉系统在振颤条件下的运动均匀特性研究
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1.东华大学 机械工程学院;2.中国科学院上海技术物理研究所;3.中国科学院上海技术物理研究所 红外物理国家重点实验室

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O43

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Analysis of the effect of vibration on the homogeneity of the kinematic mechanism of an angular mirror translational interferometer
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1.College of Mechanical Engineering,Donghua University;2.Shanghai Institute of Technical Physcics Chinese Academy of Sciences;3.State Key Laboratory of Infrared Physics,Shanghai Institute of Technical Physics,Chinese Academy of Sciences

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    摘要:

    傅立叶干涉系统(以下简称干涉仪)的光程差速度稳定性指标,可用来对干涉系统运动的速度均匀性进行量化分析。在空间遥感仪器入轨后的振颤环境下,其机构对探测过程中会出现运动可靠性问题,本文针对此工况提出并分析研究了一种新的针对干涉系统光程差的速度均匀性分析方法。外界振颤激励会引起干涉系统结构的响应,该响应可作为干涉系统全新的稳定指标进行分析,可进一步精确定量化干涉系统稳定性性能所受振颤影响,也可表征干涉系统在轨时力学表现。同时,建立干涉仪的光学表面模型,进一步从理论上表征微振动对干涉机理均匀性的影响。该方法对进一步研究外部振颤工况下干涉系统稳定性性能及其控制研究具有一定指导意义。

    Abstract:

    The effect of external vibration on the velocity uniformity of the moving mechanism of the angular mirror translational Fourier transform interferometer (hereinafter referred to as interferometer) can be quantitatively analysed by the interferometer optical range difference velocity stability. The article proposes a more comprehensive method of analysing the optical range difference velocity uniformity for the reliability of the interferometer kinematic mechanism under the influence of on-orbit microvibration in the process of space spectroscopy detection. The method incorporates the structural response of the interferometer caused by external excitation into the stability analysis as one of the influencing factors, so as to reflect the reliability of the interferometer in orbit more realistically, and judge the microvibration criticality that the interferometer can withstand more accurately. At the same time, an optical surface model of the interferometer is established to further theoretically characterise the effect of microvibration on the homogeneity of the interferometric mechanism. The method discussed in the article provides a way of thinking for the judgement of the reliability of the mechanism movement under the external excitation perturbation as well as the research on the optimisation of the mechanism control.

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  • 收稿日期:2024-12-07
  • 最后修改日期:2024-12-26
  • 录用日期:2025-01-23
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