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A Novel PE/FDTD Hybrid Model for Predicting Echo Signals of Radar Targets in Large-Scale Complex Environments

机译:一种新型PE / FDTD混合模型,用于预测大规模复杂环境中雷达靶的回波信号

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摘要

The prediction of radar target echo signal in a large-scale complex environment is of great significance in target detection, radar design and other applications. In this paper, a novel PE/FDTD hybrid model is proposed to predict monostatic radar target echo signals in large-scale complex environments. The target echo signal can be regarded as the output response of the transmitted signal which passes through a linear time invariant system composed of complex environment and target. The transport function of the complex environment is computed by the parabolic equation (PE) method and the scattering characteristics of the target are calculated by finite difference time domain method (FDTD). The combination of PE and FDTD is realized through the system response function. In combination with the ;stop-go & x201D; method, the prediction of moving target echo signal is realized. In addition, the error of combining PE with FDTD is analyzed, and the result shows that the error is less than 0.1; when the target distance is more than 10km. Additional numerical examples are given to demonstrate the correctness of the method in semi-space, rain, fog and atmospheric duct environments. The calculated results are compared with those of theoretical method, time-domain shooting and bouncing ray (TDSBR), multi-level fast multi-pole method (MLFMM) and waveguide mode theory, and good agreement among them is observed. Finally, the simulation analysis of the missile echo signal in the mixed sea-land environment with surface duct is carried out. The simulation results show that this model can be used to predict the echo signal of airborne targets in a large-scale complex environment. It is a promising option for multi-scale computing involving radar target and large-scale environment.
机译:在大规模复杂环境中的雷达目标回波信号的预测对于目标检测,雷达设计和其他应用具有重要意义。本文提出了一种新型PE / FDTD混合模型,以预测大规模复杂环境中的单体雷达目标回波信号。目标回波信号可以被视为通过由复杂环境和目标组成的线性时间不变系统的发送信号的输出响应。复杂环境的传输功能由抛物线方程(PE)方法计算,并且通过有限差分时间域方法(FDTD)计算目标的散射特性。通过系统响应函数实现PE和FDTD的组合。结合; stop-go&x201d;方法,实现了移动目标回波信号的预测。此外,分析了用FDTD组合PE的误差,结果表明误差小于0.1;当目标距离超过10km时。给出了附加的数值例子来证明在半空间,雨,雾和大气管道环境中的方法的正确性。将计算结果与理论方法,时域拍摄和蹦极射线(TDSBR),多级快速多极方法(MLFMM)和波导模式理论进行比较,并且观察到它们之间的良好一致性。最后,进行了用表面管道混合海地环境中导弹回波信号的模拟分析。仿真结果表明,该模型可用于预测大规模复杂环境中的空气靶的回声信号。这是涉及雷达目标和大规模环境的多尺度计算的有希望的选择。

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