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A novel noise-free jamming technique against LFM-PC search radar

机译:一种针对LFM-PC搜索雷达的新型无噪声干扰技术

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Linear Frequency Modulation - Pulse Compression (LFM-PC) search radars have a high processing gain that improves their detection performance even at low values of Signal-to Noise Ratio (SNR). To deny the radar detection, the jammer should use high jamming power to overcome this high processing gain which increases the required Jamming-to-Signal Ratio (JSR) is, in most cases, extravagant and unachievable. This paper introduces a novel jamming technique designated as bandwidth shift jamming. The proposed jamming technique generates a replica of the intercepted radar signal but with a small shift in bandwidth. Jamming effectiveness of the proposed technique is evaluated on a typical modern search radar model with three different types of detectors: fixed threshold, Cell Average and Greatest Of Constant False Alarm Rate (CA-CFAR, GO-CFAR). Moreover, matched filter response to the proposed jamming signal is determined and the optimum parameters of the jamming signal are identified to maximize jamming effectiveness. The results show that the proposed jamming technique needs a JSR of -6 dB at least to be effective against LFM-PC search radar.
机译:线性调频-脉冲压缩(LFM-PC)搜索雷达具有很高的处理增益,即使在信噪比(SNR)值较低的情况下,也可以提高其检测性能。为了拒绝雷达检测,干扰器应使用较高的干扰功率来克服这种较高的处理增益,这在大多数情况下会增加所需的干扰与信号比(JSR),这是浪费且无法实现的。本文介绍了一种称为带宽偏移干扰的新型干扰技术。提出的干扰技术生成了被拦截雷达信号的副本,但带宽变化很小。在具有三种不同类型检测器的典型现代搜索雷达模型上,对所提出技术的干扰效果进行了评估:固定阈值,信元平均和最大恒定误报率(CA-CFAR,GO-CFAR)。此外,确定对建议的干扰信号的匹配滤波器响应,并确定干扰信号的最佳参数以最大程度地提高干扰效率。结果表明,所提出的干扰技术至少需要-6 dB的JSR才能有效对抗LFM-PC搜索雷达。

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