Influence of the four-quadrant fixed mirror on the temperature and wind velocity inversion for the near-infrared static Mars wind imaging interferometer

Chunmin Zhang, Yu-Jin Zhang, Yifan He
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Abstract

The operating principle of the static Martian wind imaging Michelson Interferometer (MWIMI) developed by our research group is discussed in this paper, and the errors caused by the core components of the interferometer are analyzed, including the tilt of the quadrangle fixed mirror, surface heterogeneity and reflectivity errors. This work mainly studies the influence of error on the measurement of wind speed and temperature, and the error curve is obtained by computer simulation. The limit of tilt angle, surface accuracy and reflectivity of the four-quadrant fixed mirror can be obtained from this curve. Ultimately, the accuracy of the MWIMI instrument is discussed according to the actual design parameters, which verifies the high measurement accuracy of the instrument. This study lays a theoretical foundation for the design, development and engineering of a new type of wind imaging interferometer, and provides a reference for the study of Mars atmosphere, which is of great significance for the climate change, environmental detection and space exploration of Mars.
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四象限固定反射镜对近红外静态火星风成像干涉仪温度和风速反演的影响
本文讨论了本研究组研制的火星静态风成像迈克尔逊干涉仪(MWIMI)的工作原理,分析了该干涉仪核心部件的误差,包括四边形固定镜的倾斜、表面非均质性和反射率误差。本文主要研究了误差对风速和温度测量的影响,并通过计算机仿真得到了误差曲线。由该曲线可得到四象限固定镜的倾斜角极限、表面精度极限和反射率极限。最后,根据实际设计参数对MWIMI仪器的精度进行了讨论,验证了仪器具有较高的测量精度。本研究为新型风成像干涉仪的设计、研制和工程化奠定了理论基础,为火星大气研究提供了参考,对火星气候变化、环境探测和空间探索具有重要意义。
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