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A Deception Jamming Method Countering Bi- and Multistatic ISAR Based on Micro-Doppler Effect

机译:基于微多普勒效应的双,多静态ISAR欺骗干扰方法

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Bi- and multistatic inverse synthetic aperture radar (ISAR) operate with spatially separated transmitting and receiving antennas. A deception jamming method countering bi- and multistatic ISAR is proposed in this paper based on the study of micro-Doppler effect. The jammer modulates the intercepted ISAR signals with added micro-Doppler information and retransmits them to the real target, which scatters the jamming signals to the radar receivers. Deceptive false-target images with interference bands in the cross-range direction will be induced by the jamming signals through the imaging process of radar receivers. Additionally, real-time movement features of the false-targets can be flexibly adjusted by changing the modulation parameters, which improves the fidelity of the false-targets. The equivalent number of looks (ENL) index is used to evaluate the jamming effects. Simulation results validate our theoretical analysis and show the effectiveness and practicability of our method.
机译:双静态和多静态反向合成孔径雷达(ISAR)在空间上分开的发射和接收天线下工作。在微多普勒效应研究的基础上,提出了一种抗双,多静态ISAR的欺骗干扰方法。干扰器利用添加的微多普勒信息调制截获的ISAR信号,并将其重新发送到真实目标,后者将干扰信号散射到雷达接收器。在雷达接收机的成像过程中,干扰信号会在横向范围方向上产生具有干扰带的欺骗性虚假目标图像。另外,可以通过改变调制参数来灵活地调整错误目标的实时运动特征,从而提高了错误目标的保真度。等效外观数(ENL)索引用于评估干扰效果。仿真结果验证了我们的理论分析,表明了该方法的有效性和实用性。

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