首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >A Joint Image Coregistration, Phase Noise Suppression, and Phase Unwrapping Method Based on Subspace Projection for Multibaseline InSAR Systems
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A Joint Image Coregistration, Phase Noise Suppression, and Phase Unwrapping Method Based on Subspace Projection for Multibaseline InSAR Systems

机译:多基线InSAR系统中基于子空间投影的图像融合,相位噪声抑制和相位展开方法

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摘要

As is well known, image coregistration, interferometric phase noise suppression, and phase unwrapping are three key processing procedures of synthetic aperture radar interferometry (InSAR). The three procedures are cascaded in the conventional processing flow of InSAR. Unlike the conventional processing flow, in this paper we propose a joint processing idea to carry out image coregistration, interferometric phase noise filtering, and phase unwrapping simultaneously based on subspace projection for multibaseline InSAR systems. The joint processing method can perform the fine coregistration of all SAR images implicitly by extracting the correlation information in the neighboring pixel sets, suppress the phase noise by utilizing the orthogonality of the signal subspace and the corresponding noise subspace, and optimally estimate the unwrapped interferometric phases (or the terrain heights) by combining the pixel coherence and the baseline diversity of a multibaseline InSAR system. Simulated results are presented to verify the effectiveness of the joint processing method
机译:众所周知,图像成像,干涉相位噪声抑制和相位展开是合成孔径雷达干涉测量(InSAR)的三个关键处理过程。这三个过程在InSAR的常规处理流程中是级联的。与常规处理流程不同,在本文中,我们提出了一种基于子空间投影的多基线InSAR系统同时进行图像增强,干涉相位噪声滤波和相位展开的联合处理思想。联合处理方法可以通过提取相邻像素集中的相关信息来隐式执行所有SAR图像的精细配准,通过利用信号子空间和相应的噪声子空间的正交性来抑制相位噪声,并最佳地估计展开的干涉相位(或地形高度)组合多基线InSAR系统的像素一致性和基线分集。仿真结果表明了联合处理方法的有效性。

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