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Direct phase unwrapping method based on a local third-order polynomial fit

机译:基于局部三阶多项式拟合的直接相位展开方法

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摘要

When recovering smooth phases by phase unwrapping algorithms, many noniterative algorithms are available. However, normally those algorithms offer approximations of the current phase that cannot be accurate enough. This is because the majority of them are based on global approaches instead of local ones. Although smooth estimations are not often expected in phase reconstructions for real applications, a smooth initial guess could be useful for robust iterative techniques. Therefore, based on the most recent local polynomial approaches, we propose a simple least-squares fitting of the partial derivatives of the phase, normally estimated from the wrapped operator, by considering local polynomial models of the phase up to the third order. Synthetic and real data of wrapped phases are considered in our work. (C) 2019 Optical Society of America
机译:当通过相位展开算法恢复平滑阶段时,可以使用许多非特性算法。 然而,通常这些算法提供了不能准确的当前阶段的近似。 这是因为它们中的大多数都是基于全局方法而不是本地方法。 虽然在实际应用中的相位重建中通常不预期平滑估计,但是平滑的初始猜测对于鲁棒迭代技术可能是有用的。 因此,基于最近的局部多项式方法,我们提出了一种简单的最小二乘拟合阶段的部分导数,通常通过将相位的局部多项式模型考虑到第三阶的局部多项式模型来估计。 在我们的工作中考虑了包裹阶段的合成和实际数据。 (c)2019年光学学会

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