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Invariant Rules for Multipolarization SAR Change Detection

机译:多极化SAR变化检测的不变规则

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This paper deals with coherent (in the sense that both amplitudes and relative phases of the polarimetric returns are used to construct the decision statistic) multipolarization synthetic aperture radar (SAR) change detection assuming the availability of reference and test images collected from multiple polarimetric channels. At the design stage, the change detection problem is formulated as a binary hypothesis testing problem, and the principle of invariance is used to come up with decision rules sharing the constant false alarm rate property. The maximal invariant statistic and the maximal invariant in the parameter space are obtained. Hence, the optimum invariant test is devised proving that a uniformly most powerful invariant detector does not exist. Based on this, the class of suboptimum invariant receivers, which also includes the generalized likelihood ratio test, is considered. At the analysis stage, the performance of some tests, belonging to the aforementioned class, is assessed and compared with the optimum clairvoyant invariant detector. Finally, detection maps on real high-resolution SAR data are computed showing the effectiveness of the considered invariant decision structures.
机译:本文处理相干(从极化返回的幅度和相对相位均用于构建决策统计的意义上),假设从多个极化通道收集的参考图像和测试图像均可用,则多极化合成孔径雷达(SAR)变化检测。在设计阶段,将变化检测问题表述为二元假设检验问题,并使用不变性原理提出具有恒定误报率属性的决策规则。获得参数空间中的最大不变统计量和最大不变量。因此,设计了最佳不变检验,证明了不存在统一功能最强大的不变检测器。基于此,考虑了次优不变接收机的类别,其中还包括广义似然比检验。在分析阶段,评估属于上述类别的某些测试的性能,并将其与最佳千里眼不变检测器进行比较。最后,计算真实高分辨率SAR数据上的检测图,显示出所考虑的不变决策结构的有效性。

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