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基于散射中心模型的目标时域回波快速仿真
引用本文:付松,李新.基于散射中心模型的目标时域回波快速仿真[J].太赫兹科学与电子信息学报,2022,20(2):170-175.
作者姓名:付松  李新
作者单位:1.1.中国西南电子技术研究所,四川 成都 610036;2.2.武汉大学 电子信息学院,湖北 武汉 430072
摘    要:为快速获取超宽带电磁脉冲激励下雷达目标在时域上的电磁响应,提出一种基于属性散射中心正向建模的方法用于目标时域回波仿真.从目标几何模型出发,利用射线追踪、分集技术对空间中所有射线进行标记与归类,分离并定量表征目标的强散射源.基于属性散射中心模型,正向确定模型参数,构建出目标属性散射中心模型,在选定的辐射源激励下进行仿真计...

关 键 词:散射中心模型  超宽带电磁脉冲  高分辨力距离像  回波仿真  正向建模
收稿时间:2020/5/3 0:00:00
修稿时间:2020/7/10 0:00:00

Fast simulation of target time-domain echo based on scattering center model
FU Song,LI Xin.Fast simulation of target time-domain echo based on scattering center model[J].Journal of Terahertz Science and Electronic Information Technology,2022,20(2):170-175.
Authors:FU Song  LI Xin
Affiliation:1.1.Southwest China Institute of Electronic Technology, Chengdu Sichuan 610036, China;2.2.Electronic Information School, Wuhan University, Wuhan Hubei 430072, China
Abstract:A forward modeling method is proposed based on attribute scattering center for target time domain echo simulation in order to quickly obtain the electromagnetic response of the radar target in the time domain under the excitation of Ultra-Wideband(UWB) electromagnetic pulses. Starting directly from the target geometric model, ray tracing and diversity techniques are adopted to mark and classify all rays in space, the strong scattering source of the target is separated and quantitatively characterized. Based on the form of the attribute scattering center model, the model parameters are positively determined, the target attribute scattering center model is constructed, and the simulation calculation is performed under the excitation of the selected radiation source to quickly obtain the target time-domain echo signal. Taking a typical target simplified tank as an example, different types of UWB electromagnetic pulse signals are selected as the radiation source, and a simplified tank scattering center model is constructed based on the forward modeling method to quickly obtain radar echo signals under the excitation of a given electromagnetic pulse. Compared with the one-dimensional distance profile obtained by the high-frequency simulation method, the results of the proposed method have good consistency, which verifies the effectiveness of using the scattering center model to quickly perform echo simulation under the excitation of different radiation sources.
Keywords:scattering center model  UWB electromagnetic pulse  High Resolution Range Profile  echo simulation  forward modeling
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