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首页> 外文期刊>Applied optics >UNWRAPPING OF INTERFEROMETRIC PHASE-FRINGE MAPS BY THE DISCRETE COSINE TRANSFORM
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UNWRAPPING OF INTERFEROMETRIC PHASE-FRINGE MAPS BY THE DISCRETE COSINE TRANSFORM

机译:离散余弦变换解开干涉相相图

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Current whole-field interferometric techniques yield a phase distribution in module 2 pi. Removal of the resulting cyclic discontinuities is a process known as unwrapping, which must be performed before the data can be interpreted. We investigate an iterative unwrapping technique recently published by Ghiglia and Romero [J. Opt. Sec. Am. A 11, 107 (1994)], which is based on least-squares minimization, obtained by the discrete cosine transform. We apply this technique to remove phase wraps from electronic speckle pattern interferometry data, using modest personal computer hardware. The algorithm is shown to be fast, easy to implement, robust in the presence of noise, and able to handle phase inconsistencies without propagating local errors. (C) 1996 Optical Society of America [References: 6]
机译:当前的全场干涉测量技术在模块2 pi中产生相位分布。消除产生的循环不连续性是一个称为展开的过程,必须先执行该过程才能解释数据。我们研究了Ghiglia和Romero最近发表的迭代解包技术[J.选择。秒上午。 [11,107(1994)],它基于最小二乘最小化,是通过离散余弦变换获得的。我们使用这种技术,使用适度的个人计算机硬件,从电子散斑干涉测量数据中去除相位包裹。该算法显示出快速,易于实现,在存在噪声的情况下具有鲁棒性,并且能够处理相位不一致而不会传播局部误差。 (C)1996年美国眼镜学会[参考文献:6]

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