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Optimum Data Vector Approach to Multibaseline SAR Interferometry Phase Unwrapping

机译:最优数据矢量方法用于多基线SAR干涉相位展开

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Phase unwrapping is a key problem not only in all quantitative applications of synthetic aperture radar (SAR) interferometry but also in other fields. In this letter, a new phase unwrapping approach is investigated. Our study is based on the model of the optimum data vector. In order to autocoregister the SAR images, the proposed method takes advantage of the multibaseline optimal weighted joint data vector by extracting all the coherence information available in the neighboring pixels. Moreover, the method employs the projection of the joint signal subspace onto the corresponding noise subspace to estimate the unwrapped interferometric phases (or the terrain heights). The proposed method can accurately determine the dimensions of the noise subspace and provide the robust unwrapped interferometric phases even in the presence of the large image coregistration errors. Moreover, the multibaseline processing idea is a combination of data optimization, image coregistration, interferogram filtering, and phase unwrapping.
机译:相位展开不仅在合成孔径雷达(SAR)干涉测量的所有定量应用中而且在其他领域都是一个关键问题。在这封信中,研究了一种新的阶段展开方法。我们的研究基于最佳数据向量的模型。为了自动对SAR图像进行配准,该方法通过提取相邻像素中所有可用的相干信息来利用多基线最优加权联合数据矢量。此外,该方法采用联合信号子空间到相应噪声子空间上的投影来估计展开的干涉相位(或地形高度)。所提出的方法可以精确地确定噪声子空间的尺寸,并且即使在存在较大图像偏移误差的情况下,也可以提供鲁棒的展开干涉相位。此外,多基线处理的思想是数据优化,图像配准,干涉图滤波和相位展开的组合。

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