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The method for solving the inverse problem of bistatic remote sensing of the sea surface with moving receiver and transmitter

机译:收发信机移动解决海面双基地遥感反问题的方法

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The aim of this work is the development of the theoretical basis for the methods of bistatic remote sensing of the sea surface, taking into account the asymmetry of the antennas and carriers (transmitter and receiver) velocities. In this paper, analytical expressions for the spectral and energy characteristics of the quasi-specular component of the reflected radiation are presented. These formulas are suitable for practical application, without numerical calculation, and with their help, an analytical solution of the inverse problem is obtained to retrieve the parameters of the roughness of the water surface. As a result, final expressions are given for calculating the scattering cross section, the shift, and the width of the Doppler spectrum of radiation scattered by an anisotropic sea surface described by five statistical second-order moments. The obtained expressions imply in the general case the use of various asymmetric radiation patterns of the receiving and radiating antennas. An example of a measurement scheme is shown in which all unknown surface characteristics are analytically retrieved. The results are obtained for centimeter wavelengths of radiating and can be applied to both the acoustic and electromagnetic cases.
机译:这项工作的目的是考虑到天线和载波(发射器和接收器)速度的不对称性,为海面双基地遥感方法的理论基础发展。在本文中,给出了反射辐射的准镜面分量的光谱和能量特征的解析表达式。这些公式适合于实际应用,无需进行数值计算,并且借助它们,可以得到反问题的解析解,以检索水表面粗糙度的参数。结果,给出了用于计算由五个统计二阶矩描述的各向异性海面散射的辐射的散射截面,位移和多普勒光谱宽度的最终表达式。所获得的表达式在一般情况下意味着使用接收天线和辐射天线的各种不对称辐射图。显示了一种测量方案的示例,其中分析性地检索了所有未知的表面特性。该结果是针对辐射的厘米波长获得的,并且可以应用于声学和电磁情况。

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