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Target-adaptive polarimetric synthetic aperture radar target discrimination using maximum average correlation height filters

机译:使用最大平均相关高度滤波器的目标自适应极化合成孔径雷达目标识别

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摘要

We report the development of a technique for adaptive selection of polarization ellipse tilt and ellipticity angles such that the target separation from clutter is maximized. From the radar scattering matrix [S] and its complex components, in phase and quadrature phase, the elements of the Mueller matrix are obtained. Then, by means of polarization synthesis, the radar cross section of the radar scatters are obtained at different transmitting and receiving polarization states. By designing a maximum average correlation height filter, we derive a target versus clutter distance measure as a function of four transmit and receive polarization state angles. The results of applying this method on real synthetic aperture radar imagery indicate a set of four transmit and receive angles that lead to maximum target versus clutter discrimination. These optimum angles are different for different targets. Hence, by adaptive control of the state of polarization of polarimetric radar, one can noticeably improve the discrimination of targets from clutter.
机译:我们报告了一种技术的发展,用于自适应选择极化椭圆的倾斜度和椭圆度角,从而使目标与杂波的分离最大化。从雷达散射矩阵[S]及其复杂分量,在相位和正交相位中,获得穆勒矩阵的元素。然后,通过极化合成,在不同的发射和接收极化状态下获得雷达散射的雷达横截面。通过设计最大平均相关高度滤波器,我们得出了目标与杂波距离度量,作为四个发射和接收偏振态角度的函数。在真实的合成孔径雷达图像上应用此方法的结果表明,一组四个发射和接收角度导致最大的目标与杂波识别。对于不同的目标,这些最佳角度是不同的。因此,通过对极化雷达极化状态的自适应控制,可以显着提高目标对杂波的分辨能力。

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