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Radar Scattering From the Composite Ship-Ocean Scene: Facet-Based Asymptotical Model and Specular Reflection Weighted Model

机译:舰船复合场景中的雷达散射:基于分面的渐近模型和镜面反射加权模型

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摘要

The principal purpose of this work is to describe the theoretical implementation aspects of the prediction of radar returns from the composite object-ocean scene. This communication firstly presents a facet-based asymptotical model (FBAM) to give a complex reflective function of the scattering field from the sea surface using the Euler's formula and the expansion of a plane wave in terms of Bessel functions, which could facilitate the computation for the composite scene through the superposition of the scattering field of each contribution and make preparations for the postprocessing simulation such as Doppler spectrum analysis. In the interest of analyzing the coupling scattering field between the object and sea surface, a weighted approach is proposed to modified the four-path model when the under surface includes non-negligible roughness. Due to its good tractability and small calculating quantity, the entire simulator might be superior to some available models and enables us to provide a preliminary prediction on the radar cross sections (RCS) mean levels for electrically large object-sea model.
机译:这项工作的主要目的是描述从复合目标海洋场景预测雷达回波的理论实现方面。该通信首先提出了一种基于小面的渐近模型(FBAM),该模型使用欧拉公式给出了海面散射场的复杂反射函数,并根据贝塞尔函数扩展了平面波,这可以简化计算通过叠加每个贡献的散射场来合成复合场景,并为后处理仿真(如多普勒频谱分析)做准备。为了分析物体与海面之间的耦合散射场,提出了一种加权方法来修改当下表面具有不可忽略的粗糙度时的四路径模型。由于其良好的易处理性和较小的计算量,因此整个模拟器可能优于某些可用模型,并使我们能够对大型电海模型的雷达横截面(RCS)平均水平进行初步预测。

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