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Error analysis for noise reduction in 3D deformation measurement with digital color holography

机译:数字彩色全息术3D变形测量降噪误差分析

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This paper presents an analysis of phase errors generated by advanced noise removal algorithms applied to phase measurements obtained from digital holographic interferometry. The output phase error is analyzed considering two contributions: the error generated by the denoising method and the error due to phase noise. In addition, a third type of error allows quantifying the ability of any algorithm to estimate the initial noise level. A comparison of several denoising algorithms is presented to independently assess the three types of errors from a data set of simulated fringe patterns with controlled realistic noise. The results exhibit the best method for which the output error, together with the method error, is the smallest one. Knowing the error method is advantageously applied to digital color holography experiments in which deformation measurements of an object submitted to mechanical strength are given with a percentage of error due to the denoising algorithm. (C) 2017 Optical Society of America
机译:本文介绍了应用于从数字全息干涉法获得的相位测量的高级噪声去除算法产生的相位误差的分析。考虑到两个贡献,分析输出相位误差:由去噪方法产生的误差和由于相位噪声引起的错误。此外,第三种错误允许量化任何算法估计初始噪声水平的能力。呈现了几种去噪算法的比较以独立地评估来自具有受控现实噪声的模拟条纹图案的数据集三种类型的错误。结果表现出输出误差,以及方法误差的最佳方法是最小的方法。了解误差方法有利地应用于数字颜色全息实验,其中由于去噪算法引起的误差百分比给出了提交给机械强度的物体的变形测量​​。 (c)2017年光学学会

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