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Algorithms for estimating the complete group of polarization invariants of the scattering matrix (SM) based on measuring all SM elements

机译:基于测量所有SM元素来估计散射矩阵(SM)的偏振不变的完整集合的算法

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摘要

The procedure for estimating polarization invariants of the backscattering matrix in horizontal-vertical basis is considered for radar observation of arbitrary nonreciprocal objects. Two polarization invariants are added to the well-known six Huynen-Euler invariants. These new invariants (nonreciprocity angle and difference in absolute phases of the symmetric and antisymmetric parts of the scattering matrix) describe the nonreciprocal properties of the object itself. With the simultaneous measurement of all eight quadratures of the scattering matrix elements, the closed-form expressions for calculating the eight polarization invariants are given. The derived expressions are the starting point for complete estimation of the polarization properties of arbitrary radar objects with a nonsymmetric scattering matrix. The given approach can be used to study various polarization effects in remote radar sensing of artificial and natural objects, and also to simulate polarization measurement processes and estimation errors caused by the measurements of scattering matrix elements at different instants.
机译:为了对任意不可逆物体进行雷达观测,考虑了以水平-垂直为基础估计背向散射矩阵的极化不变量的过程。将两个极化不变式添加到众所周知的六个Huynen-Euler不变式。这些新的不变量(不可逆角和散射矩阵对称和反对称部分的绝对相位差)描述了对象本身的不可逆特性。通过同时测量散射矩阵元素的所有八个正交,给出了用于计算八个偏振不变性的闭式表达式。导出的表达式是完全估计具有非对称散射矩阵的任意雷达对象的偏振特性的起点。该方法可用于研究人造和自然物体的远程雷达感测中的各种偏振效应,还可以模拟偏振测量过程和估算由不同时刻散射矩阵元素引起的误差。

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