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Path independent demodulation method for single image interferograms with closed fringes within the function space C^2

机译:函数空间C ^ 2中具有闭合条纹的单幅图像干涉图的路径无关解调方法

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摘要

In the last few years, works have been published about demodulating Single Fringe Pattern Images (SFPI) with closed fringes. The two best known methods are the regularized phase tracker (RPT), and the two-dimensional Hilbert Transform method (2D-HT). In both cases, the demodulation success depends strongly on the path followed to obtain the expected estimation. Therefore, both RPT and 2D-HT are path dependent methods. In this paper, we show a novel method to demodulate SFPI with closed fringes which follow arbitrary sequential paths. Through the work presented here, we introduce a new technique to demodulate SFPI with estimations within the function space C ; in other words, estimations where the phase curvature is continuous. The technique developed here, uses a frequency estimator which searches into a frequency discrete set. It uses a second order potential regularizer to force the demodulation system to look into the function space C^2. The obtained estimator is a fast demodulator system for normalized SFPI with closed fringes. Some tests to demodulate SFPI with closed fringes using this technique following arbitrary paths are presented. The results are compared to those from RPT technique. Finally, an experimental normalized interferogram is demodulated with the herein suggested technique.
机译:在过去的几年中,已经发布了有关对具有闭合条纹的单条纹图案图像(SFPI)进行解调的作品。两种最著名的方法是正则化相位跟踪器(RPT)和二维Hilbert变换方法(2D-HT)。在这两种情况下,解调成功都很大程度上取决于获得预期估计所遵循的路径。因此,RPT和2D-HT都是与路径有关的方法。在本文中,我们展示了一种新颖的方法,该方法可解调具有遵循任意顺序路径的闭合条纹的SFPI。通过这里介绍的工作,我们介绍了一种新的技术,可以用函数空间C内的估计值解调SFPI。换句话说,估计相位曲率是连续的。此处开发的技术使用了搜索到频率离散集的频率估计器。它使用二阶电势正则器来强制解调系统查看函数空间C ^ 2。所获得的估计器是用于带有闭合条纹的标准化SFPI的快速解调器系统。提出了一些使用此技术按照任意路径解调带有封闭条纹的SFPI的测试。将结果与RPT技术的结果进行比较。最终,实验归一化干涉图通过本文提出的技术进行解调。

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