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Phase Retrieval via Incremental Truncated Amplitude Flow Algorithm

机译:通过增量截断幅度流算法进行相位检索

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This paper considers the phase retrieval problem of recovering the unknown signal from the given quadratic measurements. A phase retrieval algorithm based on Incremental Truncated Amplitude Flow (ITAF) which combines the ITWF algorithm and the TAF algorithm is proposed. The proposed ITAF algorithm enhances the initialization by performing both of the truncation methods used in ITWF and TAF respectively, and improves the performance in the gradient stage by applying the incremental method proposed in ITWF to the loop stage of TAF. Moreover, the original sampling vector and measurements are preprocessed before initialization according to the variance of the sensing matrix. Simulation experiments verified the feasibility and validity of the proposed ITAF algorithm. The experimental results show that it can obtain higher success rate and faster convergence speed compared with other algorithms. Especially, for the noiseless random Gaussian signals. ITAF can recover any real-valued signal accurately from the magnitude measurements whose number is about 2.5 times of the signal length, which is close to the theoretic limit (about 2 times of the signal length). And it usually converges to the optimal solution within 20 iterations which is much less than the state-of-the-art algorithms.
机译:本文考虑了从给定的二次测量中恢复未知信号的相位恢复问题。提出了一种将ITWF算法和TAF算法相结合的基于增量截断幅度流(ITAF)的相位检索算法。所提出的ITAF算法通过分别执行ITWF和TAF中使用的两种截断方法来增强初始化,并通过将ITWF中提出的增量方法应用于TAF的循环阶段来提高梯度阶段的性能。此外,根据感测矩阵的方差,在初始化之前对原始采样向量和测量值进行预处理。仿真实验验证了所提出的ITAF算法的可行性和有效性。实验结果表明,与其他算法相比,该算法可以获得更高的成功率和更快的收敛速度。特别是对于无噪声的随机高斯信号。 ITAF可以从幅度测量中准确地恢复任何实值信号,其数量约为信号长度的2.5倍,接近理论极限(约为信号长度的2倍)。通常,它会在20次迭代中收敛到最优解,这比最新算法要少得多。

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