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Simultaneous estimation of multiple phases in digital holographic interferometry using state space analysis

机译:使用状态空间分析同时估算数字全息干涉术中的多相

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摘要

A new approach is proposed for the multiple phase estimation from a multicomponent exponential phase signal recorded in multi-beam digital holographic interferometry. It is capable of providing multidimensional measurements in a simultaneous manner from a single recording of the exponential phase signal encoding multiple phases. Each phase within a small window around each pixel is appproximated with a first order polynomial function of spatial coordinates. The problem of accurate estimation of polynomial coefficients, and in turn the unwrapped phases, is formulated as a state space analysis wherein the coefficients and signal amplitudes are set as the elements of a state vector. The state estimation is performed using the extended Kalman filter. An amplitude discrimination criterion is utilized in order to unambiguously estimate the coefficients associated with the individual signal components. The performance of proposed method is stable over a wide range of the ratio of signal amplitudes. The pixelwise phase estimation approach of the proposed method allows it to handle the fringe patterns that may contain invalid regions.
机译:提出了一种从多光束数字全息干涉测量法中记录的多分量指数相位信号进行多相位估计的新方法。它能够从一次记录多个相位的指数相位信号的记录中,以同步方式提供多维测量。围绕每个像素的小窗口内的每个相位都使用空间坐标的一阶多项式函数来近似。精确估计多项式系数,进而展开相位的问题,被描述为状态空间分析,其中将系数和信号幅度设置为状态向量的元素。使用扩展的卡尔曼滤波器执行状态估计。为了明确地估计与各个信号分量相关的系数,使用了幅度鉴别标准。所提出的方法的性能在较大的信号幅度比范围内是稳定的。所提出方法的逐像素相位估计方法允许它处理可能包含无效区域的条纹图案。

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