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Trace Coherence: A New Operator for Polarimetric and Interferometric SAR images

机译:迹线相干:极化和干涉SAR图像的新运算符

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Quadratic forms play an important role in the development of several polarimetric and interferometric synthetic aperture radar (Pol-InSAR) methodologies, which are very powerful tools for earth observation. This paper investigates integrals of Pol-InSAR operators based on quadratic forms, with special interest on the Pol-InSAR coherence. A new operator, namely Trace Coherence, is introduced, which provides an approximation for the center of mass of the coherence region (CoRe). The latter is the locus of points on the polar plot containing all the possible coherence values. Such center of mass can be calculated as the integral of Pol-InSAR coherences over the scattering mechanisms (SMs). The trace coherence provides synthetic information regarding the partial target as one single entity. Therefore, it provides a representation, which is not dependent on the selection of one specific polarization channel. It may find application in change detection (e.g., coherent change detection and differential DEM), classification (e.g., building structure parameters), and modeling (e.g., for the retrieval of forest height). In calculating the integral of the Pol-InSAR coherences, an approximate trace coherence expression is derived and shown to improve the calculation speed by several orders of magnitude. The trace coherence approximation is investigated using Monte Carlo simulations and validated ESA (DLR) L-band quad-polarimetric data acquired during the AGRISAR 2006 campaign. The result of the analysis using simulated and real data is that the average error in approximating the integral of the coherence region is 0.025 in magnitude and 3° in phase (in scenarios with sufficiently high coherence).
机译:二次形式在几种极化和干涉合成孔径雷达(Pol-InSAR)方法的开发中起着重要作用,这是用于地球观测的非常强大的工具。本文研究基于二次形式的Pol-InSAR算子的积分,特别关注Pol-InSAR相干性。引入了一个新的运算符,即“跟踪相干性”,它提供了相干区域(CoRe)质心的近似值。后者是极坐标图上包含所有可能的相干值的点的所在地。可以将这种质心计算为散射机制(SM)上Pol-InSAR相干的积分。踪迹相干性提供有关部分目标作为一个单一实体的综合信息。因此,它提供了一种表示,它不依赖于一个特定极化通道的选择。它可以在变化检测(例如,相干变化检测和差分DEM),分类(例如,建筑结构参数)和建模(例如,用于检索森林高度)中找到应用。在计算Pol-InSAR相干性的积分时,可以得出近似的迹线相干性表达式,并表示可以将计算速度提高几个数量级。使用蒙特卡洛模拟和经过验证的ESRIS(DLR)L波段四极化数据,在AGRISAR 2006活动期间研究了跟踪相干近似。使用模拟数据和实际数据进行分析的结果是,近似相干区域积分的平均误差为0.025幅值,相位为3°(在具有足够高相干性的情况下)。

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