Abstract Adaptive detection with conic rejection to suppress deceptive jamming for frequency diverse MIMO radar
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Adaptive detection with conic rejection to suppress deceptive jamming for frequency diverse MIMO radar

机译:具有圆锥形抑制的自适应检测,抑制频率不同MIMO雷达的欺骗性干扰

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Abstract With traditional radar systems, it is not easy to classify and suppress the intended false targets, especially in case of the mainlobe deceptive jamming. In this paper, the deceptive jamming suppression issue is formulated as a problem of detecting the presence of target signal while rejecting potential deceptive jamming under the multiple-input multiple-output (MIMO) radar with frequency diverse array (FDA) as the transmit array. The problem at hand is settled by resorting to the generalized likelihood ratio test (GLRT); at the design stage we define the sets where the false target and true target lie in. Since FDA-MIMO radar provides controllable degrees of freedom in both range and angle domains, the sets are range–angle related. This implies that both range and angle properties can be used to suppress the false targets. Based on the detector, a two-pulse scheme is proposed to guarantee high rejection probability of deceptive jamming. At the analysis stage, the performance of the detector is assessed in comparison with the conventional MIMO scenario and other detectors. The performance assessment shows that the proposed solutions are effective in the presence of electronic countermeasure (ECM) systems, especially when facing mainlobe deceptive jamming. ]]>
机译:<![cdata [ Abstract 具有传统的雷达系统,不容易分类和抑制预期的假目标,特别是在mainlobe欺骗性干扰的情况下。在本文中,制定了欺骗性的干扰抑制问题作为检测目标信号的存在的问题,同时拒绝具有频率不同阵列(FDA)的多输入多输出(MIMO)雷达下的潜在欺骗性干扰作为发射阵列。通过诉诸广义的似然比测试(GLRT)来解决手头的问题;在设计阶段,我们定义虚假目标和真实目标位于的集合。由于FDA-MIMO雷达在两个范围和角度域中提供可控程度,因此该组是与范围角的范围角。这意味着可以使用两个范围和角度属性来抑制错误目标。基于检测器,提出了一种双脉冲方案,以保证欺骗性干扰的高抑制概率。在分析阶段,与传统的MIMO场景和其他探测器相比,评估检测器的性能。性能评估表明,所提出的解决方案在电子对策(ECM)系统的存在下是有效的,特别是当面向Mainlobe欺骗性干扰时。 ]]>

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