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Extended Phase Unwrapping Max-Flow/Min-Cut Algorithm for Multibaseline SAR Interferograms Using a Two-Stage Programming Approach

机译:使用两阶段编程方法的多基线SAR干涉图的扩展相位展开最大流量/最小切除算法

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摘要

Multi-baseline (MB) phase unwrapping (PU) is a key step of MB synthetic aperture radar (SAR) interferometry (InSAR). Compared with the traditional single-baseline (SB) PU, MB PU is applicable to the area where topography varies violently without obeying the phase continuity assumption. A two-stage programming MB PU approach (TSPA) proposed by H. Yu. builds the link between SB and MB PUs, so many existing classical SB PU methods can be transplanted into the MB domain. In this paper, an extended PU max-flow/min-cut (PUMA) algorithm for MB InSAR using the TSPA, referred to as TSPA-PUMA, is proposed, consisting of a two-stage programming procedure. In stage 1, phase gradients are estimated based on Chinese remainder theorem (CRT). In stage 2, a Markov random field (MRF) model of PUMA is designed for modeling local contextual dependence based on the phase gradients obtained by stage 1. Subsequently, the energy of the MRF model is minimized by graph cuts techniques. The experiment results illustrate that the TSPA-PUMA method can drastically enhance the accuracy of the original PUMA method in the rugged area, and is more efficient than the original TSPA method. In addition, the noise robustness of TSPA-PUMA can be improved through adding more interferograms with different baseline lengths.
机译:多基线(MB)相位展开(PU)是MB合成孔径雷达(SAR)干涉测量(InSAR)的关键步骤。与传统的单基线(SB)PU相比,MB PU适用于地形变化剧烈的区域,而无需遵守相位连续性假设。 H. Yu提出的两阶段编程MB PU方法(TSPA)。建立SB和MB PU之间的链接,因此可以将许多现有的经典SB PU方法移植到MB域中。本文提出了一种使用TSPA的MB InSAR扩展PU最大流量/最小切割(PUMA)算法,称为TSPA-PUMA,它包括一个两阶段的编程过程。在阶段1中,根据中国余数定理(CRT)估算相位梯度。在阶段2中,设计了PUMA的马尔可夫随机场(MRF)模型,用于基于阶段1获得的相位梯度来建模局部上下文相关性。随后,通过图割技术将MRF模型的能量降至最低。实验结果表明,TSPA-PUMA方法可以在崎area不平的地方大幅度提高原始PUMA方法的准确性,并且比原始TSPA方法更有效。此外,可以通过添加更多具有不同基线长度的干涉图来提高TSPA-PUMA的噪声鲁棒性。

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