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Methods for reconstruction of 2-D sequences from Fourier transform magnitude

机译:从傅立叶变换幅度重建二维序列的方法

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The Gerchberg-Saxton (GS) algorithm and its generalizations have been the main tools for phase retrieval. Unfortunately, it has been observed that the reconstruction using these algorithms does not always converge to the correct result even if the desired solution satisfies the uniqueness condition. In this paper, we propose a new deautocorrelation algorithm and a few auxiliary techniques. We recommend that a combination of the iterative Fourier transform (IFT) algorithm with our new algorithm and techniques can improve the probability of success of phase retrieval. A pragmatic procedure is illustrated. Different reconstruction examples that are difficult to reconstructed using the single IFT algorithm are used to show the robustness and effectiveness of the new combination of algorithms. If the given Fourier modulus data contain no noise, it is sometimes possible to get a perfect reconstruction. Even when the signal-to-noise ratio (SNR) of the Fourier modulus data is only 10 dB, a meaningful result remains reachable for our examples. A concept concerning the intrinsic ambiguity of phase retrieval is suggested. We emphasize the necessity of verification of the solution, since the available phase retrieval algorithms are incompetent for distinguishing between an intrinsically ambiguous solution and the true solution.
机译:Gerchberg-Saxton(GS)算法及其推广已成为相位检索的主要工具。不幸的是,已经观察到,即使期望的解决方案满足唯一性条件,使用这些算法的重建也并不总是收敛于正确的结果。在本文中,我们提出了一种新的去自相关算法和一些辅助技术。我们建议将迭代傅里叶变换(IFT)算法与我们的新算法和技术结合使用,可以提高相位检索成功的可能性。说明了一个实用的过程。使用单个IFT算法难以重构的不同重构示例用于显示算法新组合的鲁棒性和有效性。如果给定的傅立叶模量数据不包含噪声,则有时可能会获得完美的重构。即使当傅立叶模量数据的信噪比(SNR)仅10 dB时,对于我们的示例,仍然可以获得有意义的结果。提出了有关相位检索的内在模糊性的概念。我们强调解决方案验证的必要性,因为可用的相位检索算法无法区分本质上模棱两可的解决方案和真实的解决方案。

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