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Moiré fringe measurement system of optical length modulation based on FPGA

机译:基于FPGA的莫尔条纹光学长度调制测量系统。

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摘要

A novel method for measuring moiré fringe is proposed according to moiré fringe characteristics in each interference region of double grating interferometer. Moiré fringe pattern in Talbot image region II only shifts with the thickness of phased object when adjusting its position. The phased object is composed by two relative movable optic wedges. The method of micro-displacement measurement using this optic characteristic in this region can be verified by MATLAB. A new embedded differential direction recognizing and 4-subdividing method for moiré fringes is adopted by using EP2C8Q208. In moiré fringe hardware detecting system, 4-subdividing, direction recognizing and counting module are designed, and logical and timing diagram is simulated by VHDL. In comparison with others, this design possesses low cost, high flexibility, high system synchronization and easy upgrade.
机译:根据双光栅干涉仪各干涉区域的莫尔条纹特征,提出了一种测量莫尔条纹的新方法。当调整其位置时,Talbot图像区域II中的莫尔条纹图案仅随相移对象的厚度移动。相控物体由两个相对的可移动光学楔块组成。利用该光学特性在该区域中进行微位移测量的方法可以通过MATLAB进行验证。利用EP2C8Q208,采用了一种新的莫尔条纹嵌入式差分方向识别和4细分方法。在莫尔条纹边缘检测系统中,设计了四细分,方向识别和计数模块,并利用VHDL对逻辑和时序图进行了仿真。与其他相比,该设计具有低成本,高灵活性,高系统同步性和易于升级的特点。

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