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High-Fidelity Inhomogeneous Ground Clutter Simulation of Airborne Phased Array PD Radar Aided by Digital Elevation Model and Digital Land Classification Data

机译:数字高程模型和数字土地分类数据辅助的机载相控阵PD雷达高保真非均匀地杂波仿真

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摘要

This paper presents a high-fidelity inhomogeneous ground clutter simulation method for airborne phased array Pulse Doppler (PD) radar aided by a digital elevation model (DEM) and digital land classification data (DLCD). The method starts by extracting the basic geographic information of the Earth’s surface scattering points from the DEM data, then reads the Earth’s surface classification codes of Earth’s surface scattering points according to the DLCD. After determining the landform types, different backscattering coefficient models are selected to calculate the backscattering coefficient of each Earth surface scattering point. Finally, the high-fidelity inhomogeneous ground clutter simulation of airborne phased array PD radar is realized based on the Ward model. The simulation results show that the classifications of landform types obtained by the proposed method are more abundant, and the ground clutter simulated by different backscattering coefficient models is more real and effective.
机译:本文提出了一种基于数字高程模型(DEM)和数字土地分类数据(DLCD)的机载相控阵脉冲多普勒(PD)雷达高保真非均匀地面杂波模拟方法。该方法首先从DEM数据中提取地球表面散射点的基本地理信息,然后根据DLCD读取地球表面散射点的地球表面分类代码。确定地形类型后,选择不同的反向散射系数模型以计算每个地球表面散射点的反向散射系数。最后,基于Ward模型,实现了机载相控阵PD雷达的高保真非均质地面杂波仿真。仿真结果表明,该方法得到的地貌类型分类更加丰富,采用不同的后向散射系数模型模拟地物更为真实有效。

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