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Forcing Scale Invariance in Multipolarization SAR Change Detection

机译:多极化SAR变化检测中的强迫尺度不变性

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This paper considers the problem of 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 change detection starting from the availability of image pairs exhibiting possible power mismatches/miscalibrations. The principle of invariance is used to characterize the class of scale-invariant decision rules which are insensitive to power mismatches and ensure the constant false alarm rate property. A maximal invariant statistic is derived together with the induced maximal invariant in the parameter space which significantly compresses the data/parameter domain. A generalized likelihood ratio test is synthesized both for the cases of two- and three-polarimetric channels. Interestingly, for the two-channel case, it is based on the comparison of the condition number of a data-dependent matrix with a suitable threshold. Some additional invariant decision rules are also proposed. The performance of the considered scale-invariant structures is compared to those from two noninvariant counterparts using both simulated and real radar data. The results highlight the robustness of the proposed method and the performance tradeoff involved.
机译:本文考虑了相干问题(从极化返回的振幅和相对相位都用于构造决策统计量的角度),多极化合成孔径雷达变化检测从显示可能存在功率不匹配/失准的图像对开始。不变原理用于描述对功率不匹配不敏感并确保恒定的误报率属性的尺度不变决策规则的类别。导出最大不变统计量以及在参数空间中引起的最大不变量,从而极大地压缩了数据/参数域。对于两极化和三极化通道,都需要综合广义似然比检验。有趣的是,对于两通道情况,它基于具有适当阈值的数据相关矩阵的条件数的比较。还提出了一些其他的不变决策规则。使用模拟和真实雷达数据,将考虑的尺度不变结构的性能与两个不变的对应结构的性能进行比较。结果突出了所提出方法的鲁棒性和所涉及的性能折衷。

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