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数字全息干涉术中从单个条纹图案估计多个相位。

Estimation of multiple phases from a single fringe pattern in digital holographic interferometry.

作者信息

Rajshekhar Gannavarpu, Gorthi Sai Siva, Rastogi Pramod

机构信息

Applied Computing and Mechanics Laboratory, Ecole Polytechnique Fédérale de Lausanne, Lausanne, Switzerland.

出版信息

Opt Express. 2012 Jan 16;20(2):1281-91. doi: 10.1364/OE.20.001281.

Abstract

Simultaneous measurement of multidimensional displacements using digital holographic interferometry involves multi-directional illumination of the deformed object and requires the reliable estimation of the resulting multiple interference phase distributions. The paper introduces an elegant method to simultaneously estimate the desired multiple phases from a single fringe pattern. The proposed method relies on modeling the reconstructed interference field as a piecewise multicomponent polynomial phase signal. Effectively, in a given region or segment, the reconstructed interference field is represented as the sum of different components i.e. complex signals with polynomial phases. The corresponding polynomial coefficients are estimated using the product high-order ambiguity function. To ensure proper matching of the estimated coefficients with the corresponding components, an amplitude based discrimination criterion is used. The main advantage of the proposed method is direct retrieval of multiple phases without the application of spatial carrier based filtering operations.

摘要

使用数字全息干涉术同时测量多维位移涉及对变形物体进行多方向照明,并且需要可靠地估计由此产生的多个干涉相位分布。本文介绍了一种从单个条纹图案中同时估计所需多个相位的精妙方法。所提出的方法依赖于将重建的干涉场建模为分段多分量多项式相位信号。实际上,在给定区域或段中,重建的干涉场表示为不同分量(即具有多项式相位的复信号)的总和。使用乘积高阶模糊函数估计相应的多项式系数。为确保估计系数与相应分量正确匹配,使用基于幅度的判别准则。该方法的主要优点是无需应用基于空间载波的滤波操作即可直接检索多个相位。

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