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A Sparse-Driven Anti-Velocity Deception Jamming Strategy Based on Pulse-Doppler Radar with Random Pulse Initial Phases

机译:基于随机脉冲初始相位的脉冲多普勒雷达的稀疏驱动反速度欺骗干扰策略

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摘要

This paper focuses on developing an anti-velocity jamming strategy that enhances the ability of a pulse-Doppler (PD) radar to detect moving targets in the presence of translational and/or micro motion velocity jamming generated by the digital radio frequency memory (DRFM) repeat jammers. The strategy adopts random pulse initial phase (RPIP) pulses as its transmitted signal and thus gets DRFM jammers not adaptable to the randomness of initial phase of the transmitted pulses in the pulse repetition interval (PRI) domain. The difference between the true target echo and the false target jamming signal at each PRI is then utilized to recognize the true and false target signals. In particular, an entropy based multi-channel processing scheme is designed to extract the information of the received signal without the assumption that true and false targets must be both included within one coherent processing interval (CPI). Information such as the component of the received signal (target echo only, jamming only or both) or the operating manner of DRFM repeat jammer can be gained (if jamming exists). Meanwhile, we solve the false target recognition problem under sparse theory frame and our previous work named the short-time sparse recovery (STSR) algorithm is introduced to recover the motion parameters of the true and/or false targets in the time-frequency domain. It should be pointed out that both the translational false target jamming and micro motion target jamming can be recognized in our strategy. The performance of the proposed strategy is compared with the correlated processing (CP) method used by most extant strategies. It is shown that the proposed strategy can successfully recognize the existence of true and/or false targets and keep its power in recovering corresponding motion parameters even when the jamming environment is strong.
机译:本文着重于开发一种抗速度干扰策略,该策略可增强脉冲多普勒(PD)雷达在存在数字射频存储器(DRFM)产生的平移和/或微运动速度干扰的情况下检测运动目标的能力重复干扰。该策略采用随机脉冲初始相位(RPIP)脉冲作为其发射信号,因此在脉冲重复间隔(PRI)域中使DRFM干扰器不适合发射脉冲初始相位的随机性。然后,利用每个PRI处的真实目标回波和错误目标干扰信号之间的差异来识别真实和错误目标信号。特别地,基于熵的多通道处理方案被设计为提取接收到的信号的信息,而无需假设必须在一个相干处理间隔(CPI)内同时包含真假目标。可以获得诸如接收信号的成分(仅目标回波,仅干扰或两者兼有)或DRFM重复干扰器的工作方式(如果存在干扰)之类的信息。同时,我们在稀疏理论框架下解决了虚假目标识别问题,并引入了我们先前的工作-短时稀疏恢复(STSR)算法,以在时频域中恢复真实和/或虚假目标的运动参数。应该指出的是,在我们的策略中可以识别平移错误目标干扰和微动目标干扰。将所提出策略的性能与大多数现有策略所使用的相关处理(CP)方法进行比较。结果表明,即使在强干扰环境下,该策略也能成功识别出正确和/或错误目标的存在,并保持其恢复相应运动参数的能力。

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