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Colocated MIMO Radar Waveform Design Against Repeat Radar Jammers

机译:防重复雷达干扰的共置MIMO雷达波形设计

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The digital radio frequency memory (DRFM) repeat jammer, which replicas the transmit signal and transmits back to radar receiver to create deceptive targets, is a cheap and quite destructive electronic attack. This paper concerns waveform design at the background of colocated multiple-input multiple-output (MIMO) radar to combat with the repeat jammers. Specifically, since the amplifiers of transmit circuits of repeat jammers often operate in the saturation mode, the repeat jamming signals should be constant modulus. However, for colocated MIMO radar, the synthetic angular waveform in space often is nonconstant modulus, which may have better performance in such environment. Under the assumption that hostile jammers operate in the saturation mode, we formulate a min-max design criterion that minimizes cross correlation between an angular waveform and a constant modulus waveform with the same phase terms. Numerical results validate the effectiveness of the proposed method.
机译:数字射频存储器(DRFM)重复干扰器是一种廉价且具有破坏性的电子攻击,可复制发送信号并发送回雷达接收器以创建欺骗性目标。本文涉及共置多输入多输出(MIMO)雷达背景下的波形设计,以应对重复干扰。具体地,由于重复干扰机的发送电路的放大器通常以饱和模式工作,因此重复干扰信号应为恒定模量。但是,对于共置MIMO雷达,空间中的合成角波形通常为非恒定模量,在这种环境下可能具有更好的性能。在敌对干扰器以饱和模式工作的假设下,我们制定了最小-最大设计准则,该准则将具有相同相位项的角度波形和恒定模量波形之间的互相关性最小化。数值结果验证了该方法的有效性。

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