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首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Maximum-likelihood phase estimation in phase-shifting electronic speckle pattern interferometry and its comparison with least-squares estimation
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Maximum-likelihood phase estimation in phase-shifting electronic speckle pattern interferometry and its comparison with least-squares estimation

机译:相移电子散斑干涉法中的最大似然相位估计及其与最小二乘估计的比较

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The least-squares phase-fitting method, developed recently without any statistical justification, extracts an almost noiseless phase directly from the distribution of the intensities of phase-shifted speckle interference patterns [C. K. Hong et al., Opt. Lett. 20, 931 (1995)]. We present another method that can do the same by using the statistically well-established maximum-likelihood algorithm. Numerical simulations show that the precision of the maximum-likelihood estimate is better than that of the least-squares method by 19% and that its precision essentially achieves the one given by the Cram#r-Rao lower bound. The limitations of the two methods subject to the phase variation within a fitting window are also studied. # 1997 Optical Society of America [S0740-3232(97)00405-5]
机译:最近开发的最小二乘相位拟合方法没有任何统计依据,可直接从相移斑点干涉图样强度的分布中提取几乎无噪声的相位[C. K. Hong等人,选项来吧20,931(1995)]。我们提出了另一种可以通过使用统计上公认的最大似然算法来做到这一点的方法。数值模拟表明,最大似然估计的精度比最小二乘方法的精度高19%,并且其精度基本上达到了Cram#r-Rao下界给出的精度。还研究了两种方法在拟合窗口内受相位变化的限制。 #1997美国光学学会[S0740-3232(97)00405-5]

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