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Phase retrieval in digital speckle pattern interferometry by use of a smoothed space-frequency distribution

机译:利用平滑的空频分布进行数字散斑干涉测量中的相位恢复

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We evaluate the use of a smoothed space-frequency distribution (SSFD) to retrieve optical phase maps in digital speckle pattern interferometry (DSPI). The performance of this method is tested by use of computer-simulated DSPI fringes. Phase gradients are found along a pixel path from a single DSPI image, and the phase map is finally determined by integration. This technique does not need the application of a phase unwrapping algorithm or the introduction of carrier fringes in the interferometer. It is shown that a Wigner-Ville distribution with a smoothing Gaussian kernel gives more-accurate results than methods based on the continuous wavelet transform. We also discuss the influence of filtering on smoothing of the DSPI fringes and some additional limitations that emerge when this technique is applied. The performance of the SSFD method for processing experimental data is then illustrated.
机译:我们评估使用平滑的空间频率分布(SSFD)来检索数字散斑图案干涉术(DSPI)中的光学相位图。此方法的性能通过使用计算机模拟的DSPI条纹进行测试。从单个DSPI图像沿像素路径发现相位梯度,最后通过积分确定相位图。该技术不需要在干涉仪中应用相位展开算法或引入载波条纹。结果表明,与基于连续小波变换的方法相比,具有平滑高斯核的Wigner-Ville分布可提供更准确的结果。我们还将讨论滤波对DSPI条纹平滑的影响以及应用此技术时出现的一些其他限制。然后说明了SSFD方法用于处理实验数据的性能。

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