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Determination of global phase shifts between interferograms by use of an energy-minimum algorithm

机译:使用能量最小算法确定干涉图之间的整体相移

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摘要

A new algorithm for precise determination of the global phase shift between two interferograms is introduced. First we calculate the frame difference between the first and the second interferogram; the difference is multiplied by a properly chosen test phase factor, and then we implement a two-dimensional Fourier transform of the frame difference and calculate the energy of the first positive (or negative) diffraction order. An iterative approach is used for the test phase to ensure that the minimum energy is obtained, and then the correct phase shift value is found. This method is called the energy-minimum Fourier transform method, which is accurate and noise insensitive compared with the single-point Fourier transform method. Both the theoretical analysis and experimental results are given.
机译:介绍了一种精确确定两个干涉图之间的整体相移的新算法。首先,我们计算第一张和第二张干涉图之间的帧差;将该差乘以适当选择的测试相位因子,然后对帧差执行二维傅立叶变换,并计算第一个正(或负)衍射级的能量。测试阶段使用迭代方法来确保获得最小的能量,然后找到正确的相移值。这种方法称为能量最小傅里叶变换方法,与单点傅里叶变换方法相比,它是准确的并且对噪声不敏感。给出了理论分析和实验结果。

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