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On the impact of propagation disturbances on SAR Tomography: Analysis and compensation

机译:传播干扰对SAR层析成像的影响:分析和补偿

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This paper is meant to discuss the role of propagation disturbances, such as those due to atmospheric disturbances or to residual platform motion, in SAR Tomography applications. It will be shown that phase stability requirements vary as a function of the number of targets within the system resolution cell, from which it follows that SAR Tomography applications require a higher phase stability, or a more accurate phase calibration, with respect to SAR Interferometry. Phase calibration will be discussed by comparing two approaches. The first is the traditional approach from Permanent Scatterers Interferometry, based on the assumption that it is possible to find stable targets in the imaged scene. The second is a new technique based on the Sum of Kronecker Products Decomposition, recently introduced in literature, which allows to isolate ground and volume contributions within the data provided the availability of multi-polarimetric acquisitions. As such, the latter approach is suited to carry out phase calibration in presence of volume scattering, as it is the case of forested areas. Experimental results will be provided basing on the analysis of the P-Band data-set relative to the forest site of Remningstorp, Sweden.
机译:本文旨在讨论在SAR层析成像应用中传播干扰(例如由于大气干扰或残留平台运动引起的干扰)的作用。将会显示,相位稳定性要求随系统分辨率单元内目标数量的变化而变化,由此可以得出,SAR层析成像应用相对于SAR干涉测量法要求更高的相位稳定性或更准确的相位校准。将通过比较两种方法来讨论相位校准。第一种是基于永久散射体干涉测量法的传统方法,该方法基于以下假设:可以在成像场景中找到稳定的目标。第二种是基于最近在文献中引入的Kronecker产品分解总和的新技术,该技术可以在提供多极化采集的情况下隔离数据中的地面和体积贡献。这样,后一种方法适用于在存在体积散射的情况下进行相位校准,就像林区一样。将基于相对于瑞典Remningstorp森林站点的P波段数据集的分析,提供实验结果。

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