The Investigation of EM Scattering from the Time-Varying Overturning Wave Crest Model by the IEM

Xiao Meng, Li-xin Guo, Tianqi Fan
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Abstract

Investigation of the electromagnetic (EM) scattering of time-varying overturning wave crests is a worthwhile endeavor. Overturning wave crest is one of the reasons of sea spike generation, which increases the probability of false radar alarms and reduces the performance of multitarget detection in the environment. A three-dimensional (3D) time-varying overturning wave crest model is presented in this paper; this 3D model is an improvement of the traditional two-dimensional (2D) time-varying overturning wave crest model. The integral equation method (IEM) was employed to investigate backward scattering radar cross sections (RCS) at various incident angles of the 3D overturning wave crest model. The super phenomenon, where the intensity of horizontal polarization scattering is greater than that of vertical polarization scattering, is an important feature of sea spikes. Simulation results demonstrate that super phenomena may occur in some time samples as variations in the overturning wave crest.
时变倾覆波峰模型电磁散射的IEM研究
时变倾覆波峰的电磁散射研究是一项有价值的工作。倾覆波峰是产生海峰的原因之一,它增加了雷达误报的概率,降低了环境下多目标探测的性能。提出了一种三维时变倾覆波峰模型;该三维模型是对传统二维时变倾覆波峰模型的改进。采用积分方程法(IEM)研究了三维倾覆波峰模型不同入射角下的后向散射雷达截面(RCS)。水平极化散射强度大于垂直极化散射强度的超现象是海峰的一个重要特征。仿真结果表明,在某些时间样本中,倾覆波峰的变化可能会产生超现象。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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