首页> 外文期刊>International Journal on Smart Sensing and Intelligent Systems >ADJUSTMENT OF THE PARALLELISM OF TWO MIRRORS FOR WIDE ANGLE DIVIDED MIRROR MICHELSON WIND IMAGING INTERFEROMETER
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ADJUSTMENT OF THE PARALLELISM OF TWO MIRRORS FOR WIDE ANGLE DIVIDED MIRROR MICHELSON WIND IMAGING INTERFEROMETER

机译:广角分镜米歇尔森风成像干涉仪对两个镜的平行度的调整

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摘要

Many ways have been developed to measure atmospheric winds by detecting the Doppler shifts of airglow emission lines. The Michelson Interferometer is widely used because of its simple principle. To get the Doppler shifts to calculate the wind velocity, researchers developed four-phase-step and divided mirror technology respectively. But they face challenges in many fields. So a wide angle Michelson Interferometer combining with divided mirror and phase stepping technique is used in this paper. A new algorithm is proposed in this paper to adjust the parallelism of the two mirrors for the Michelson Interferometer. Thus a high precision parallelism of the two mirrors can be obtained to get the phase shift and calculate wind velocity. The interval of the two mirrors has maximum difference less than one tenth wavelength. The experiments were performed in visible channel to prove the feasibility of this proposed algorithm. It can also be used in other fields demanding two surfaces parallel with high precision.
机译:通过检测气辉发射线的多普勒频移,已经开发出许多方法来测量大气风。迈克尔逊干涉仪由于其简单的原理而被广泛使用。为了获得多普勒频移来计算风速,研究人员分别开发了四相步进和分镜技术。但是他们在许多领域都面临挑战。因此,本文采用了结合了分光镜和相位步进技术的广角迈克尔逊干涉仪。本文提出了一种新的算法来调整迈克尔逊干涉仪的两个反射镜的平行度。因此,可以获得两个反射镜的高精度平行度以获得相移并计算风速。两个反射镜的间隔的最大差小于十分之一波长。实验在可见信道上进行,证明了该算法的可行性。它也可以用于要求两个平行表面高精度的其他领域。

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