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Two-dimensional phase unwrapping of subsampled phase-shifted interferograms

机译:二次采样相移干涉图的二维相位展开

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摘要

A novel procedure for phase recovery from undersampled phase-shifted interferograms is described. First, synthetic interferograms are used to calculate the wrapped phase differences along two orthogonal directions. Second, they are unwrapped to recover the true Laplacian of the phase. The final step is to integrate the unwrapped phase differences to obtain the required phase. This method may be used with either path-independent or path-dependent phase unwrapping algorithms. The technique overcomes the sensitivity to noise of previous algorithms when low pass filtering techniques are applied during the calculation of the phase differences and least square methods are employed in the final step of phase integration.
机译:描述了一种从欠采样相移干涉图中恢复相位的新方法。首先,使用合成干涉图来计算沿两个正交方向的包裹相位差。其次,将它们展开以恢复该阶段的真实拉普拉斯算子。最后一步是对展开的相位差进行积分以获得所需的相位。此方法可以与路径无关或路径相关的相位展开算法一起使用。当在相位差的计算过程中应用低通滤波技术并且在相位积分的最后一步采用最小二乘法时,该技术克服了先前算法对噪声的敏感性。

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