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Impact of cross-polarization isolation on polarimetric target decomposition and target detection

机译:交叉极化隔离对极化目标分解和目标检测的影响

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Cross-polarization isolation is one of the key engineering parameters for a polarimetric radar system. Previous studies focused more on the calibration of cross-talk contamination. This paper presents a numerical evaluation of the requirement for cross-polarization isolation from the data users' perspective, i.e., the quantitative impact of polarization cross talk on polarimetric target decomposition and the associated applications such as classification and detection. Sensitivity analyses of several commonly used target decomposition parameters suggest that a theoretical lower bound of −32 dB isolation level is preferred to avoid any significant impact on these parameters. Our analyses with both simulated and real synthetic aperture radar (SAR) data show that a level of −25 dB would be acceptable for general terrain surface classification. This requirement is also true for man-made target detection application. Using simulated SAR images of man-made targets in natural environment, sensitivity analyses on two polarimetric detectors, Yang and Marino, both suggest that target detection performance would break down rapidly if isolation deteriorates from −25 dB to −20 dB.
机译:交叉极化隔离是极化雷达系统的关键工程参数之一。先前的研究更多地集中在串扰污染的校准上。本文从数据用户的角度对交叉极化隔离的要求进行了数值评估,即极化串扰对极化目标分解及其相关应用(如分类和检测)的定量影响。对几个常用目标分解参数的灵敏度分析表明,最好采用−32 dB隔离级别的理论下限,以避免对这些参数产生任何重大影响。我们对模拟和实际合成孔径雷达(SAR)数据的分析表明,对于一般的地形表面分类,-25 dB的水平是可以接受的。对于人造目标检测应用程序,此要求也适用。使用自然环境中人造目标的模拟SAR图像,对两个偏振检测器Yang和Marino进行的灵敏度分析均表明,如果隔离度从-25 dB下降到-20 dB,目标检测性能将迅速下降。

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