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Enhanced Phase Retrieval Method Based on Random Phase Modulation

机译:基于随机相位调制的增强相位检索方法

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The phase retrieval method based on random phase modulation can wipe out any ambiguity and stagnation problem in reconstruction. However, the two existing reconstruction algorithms for the random phase modulation method are suffering from problems. The serial algorithm from the spread-spectrum phase retrieval method can realize rapid convergence but has poor noise immunity. Although there is a parallel framework that can suppress noise, the convergence speed is slow. Here, we propose a random phase modulation phase retrieval method based on a serial–parallel cascaded reconstruction framework to simultaneously achieve quality imaging and rapid convergence. The proposed serial–parallel cascaded method uses the phased result from the serial algorithm to serve as the initialization of the subsequent parallel process. Simulations and experiments demonstrate that the superiorities of both serial and parallel algorithms are fetched by the proposed serial–parallel cascaded method. In the end, we analyze the effect of iteration numbers from the serial process on the reconstruction performance to find the optimal allocation scope of iteration numbers.
机译:基于随机相位调制的相位检索方法可以消除重建中的任何歧义和停滞问题。然而,用于随机相位调制方法的两个现有的重建算法遭受问题。来自扩频相位检索方法的串行算法可以实现快速收敛但具有差的抗噪性。虽然有一个并行框架可以抑制噪声,但收敛速度慢。这里,我们提出了一种基于串行分级级联重建框架的随机相位调制相位检索方法,同时实现质量成像和快速收敛。所提出的串行 - 并行级联方法使用串行算法的分阶段结果用作后续并行过程的初始化。模拟和实验表明,通过所提出的串行平行级联方法提取串行和并行算法的优越性。最后,我们分析了从串行过程中迭代号的效果,以找到迭代号的最佳分配范围。

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