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Near-field scattering by physical theory of diffraction and shooting and bouncing rays

机译:通过衍射和射弹和反弹光的物理理论进行的近场散射

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摘要

This paper proposes a method to compute the near-field RCS and Doppler spectrum of a target when the distances to the antennas are comparable to the target size. By dealing with a small piece of the target surface at a time, the transmitting antenna, and the receiving antenna are in the far-field zone of the small piece of the induced currents. The electromagnetic field produced by this small piece of induced currents can be written as a spherical wave. Sum up all spherical waves produced by every small piece of induced currents and we can obtain the total scattered field at the receiving antenna. The physical theory of diffraction (PTD) and the method of shooting and bouncing rays (SBR) are modified to evaluate the received signals. Numerical results based on these techniques are obtained and discussed. The formulation applies the simple concepts of "equivalent" image and vector effective height, which are believed to be novel.
机译:本文提出了一种在距天线的距离与目标尺寸相当的情况下计算目标近场RCS和多普勒频谱的方法。通过一次处理一小块目标表面,发射天线和接收天线位于一小部分感应电流的远场区域中。由这小部分感应电流产生的电磁场可以写为球面波。将每小段感应电流产生的所有球形波加起来,就可以得到接收天线的总散射场。修改了衍射的物理理论(PTD)和发射和反射光线的方法(SBR)以评估接收到的信号。获得并讨论了基于这些技术的数值结果。该公式采用了“等效”图像和矢量有效高度的简单概念,这些概念被认为是新颖的。

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