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首页> 外文期刊>International journal of antennas and propagation >Monte Carlo Simulation of the Echo Signals from Low-Flying Targets for Airborne Radar
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Monte Carlo Simulation of the Echo Signals from Low-Flying Targets for Airborne Radar

机译:机载雷达低空目标回波信号的蒙特卡洛模拟

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A demonstrated hybrid method based on the combination of half-space physical optics method (PO), graphical-electromagnetic computing (GRECO), and Monte Carlo method on echo signals from low-flying targets based on actual environment for airborne radar is presented in this paper. The half-space physical optics method , combined with the graphical-electromagnetic computing (GRECO) method to eliminate the shadow regions quickly and rebuild the target automatically, is employed to calculate the radar cross section (RCS) of the conductive targets in half space fast and accurately. The direct echo is computed based on the radar equation. The reflected paths from sea or ground surface cause multipath effects. In order to accurately obtain the echo signals, the phase factors are modified for fluctuations in multipath, and the statistical average value of the echo signals is obtained using the Monte Carlo method. A typical simulation is performed, and the numerical results show the accuracy of the proposed method.
机译:本文提出了一种基于机载雷达实际环境的,结合半空间物理光学方法(PO),图形电磁计算(GRECO)和蒙特卡罗方法的低空目标回波信号混合方法纸。半空间物理光学方法结合图形电磁计算(GRECO)方法快速消除阴影区域并自动重建目标,用于快速计算半空间中导电目标的雷达截面(RCS)准确地。直接回波基于雷达方程计算。来自海洋或地面的反射路径会导致多路径效应。为了准确地获得回波信号,修改相位因子以适应多径波动,并使用蒙特卡洛方法获得回波信号的统计平均值。进行了典型的仿真,数值结果表明了该方法的准确性。

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