偏振SAR图像的子孔径分析

J. Kelly, T. Ainsworth, Jong-Sen Lee
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引用次数: 0

摘要

本文研究了熵、各向异性、α角、取向角、螺旋度等单个极化参数的非稳态行为。我们区分了仅依赖于标准cloud - pottier极化分解(跨度、熵和各向异性)的特征值的参数和依赖于散射机制的其他参数,即cloud - pottier特征向量。在生成一系列方位角子孔径偏振图像后,我们将偏振分解应用于每个子孔径帧,并识别出显示非平稳散射的子孔径帧。对几个具体目标(包括离散目标和分布目标)的比较,将突出显示相对于SAR视角的极化变异性。我们使用EMISAR l波段偏振SAR数据来说明我们的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Subaperture analysis of polarimetric SAR imagery
In this paper we investigate the nonstationary behavior of individual polarimetric parameters, e.g. entropy, anisotropy, alpha angle, orientation angle, helicity, etc. We distinguish between parameters that depend solely on the eigenvalues of the standard Cloude-Pottier polarimetric decomposition (span, entropy and anisotropy) and the others that depend on the scattering mechanisms, i.e. the Cloude-Pottier eigenvectors. After producing a series of azimuth subaperture polarimetric images, we apply the polarimetric decomposition to each subaperture frame and identify subaperture frames that show nonstationary scattering. Comparison of several specific targets, both discrete and distributed, will highlight aspects of polarimetric variability with respect to the SAR view angle. We illustrate our results using EMISAR L-band polarimetric SAR data.
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