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A Novel Waveform Design Method for Shift-Frequency Jamming Confirmation

机译:移频干扰确认的波形设计新方法

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摘要

Shift-frequency jamming is generally used to form range false targets for ground-based early-warning radar systems; the frequency shift value of such interference is larger than the Doppler shift value of the moving target, and the key element to suppress the shift-frequency jamming is the frequency shift value estimation. However, in the low- or medium-pulse repetition frequency (PRF) mode, it is challenging to estimate the accurate frequency shift due to the velocity ambiguity. To solve this problem, a novel sparse Doppler-sensitive waveform is designed based on the ambiguity function theory, where the basic idea is to design a waveform sensitive to a specific Doppler but insensitive to other Dopplers; therefore, this waveform can recognize the specific Doppler of the target unambiguously. To apply the designed waveform in practice, the detection and estimation processing flow is provided based on the waveform diversity technique and the family of the sparse Doppler-sensitive waveforms. Simulation experiments are presented to validate the efficiency of the proposed method, and we conclude that the advantage of this method is that it can be used to confirm the specific Doppler of the target unambiguously with few pulses even under the condition of a low PRF.
机译:频移干扰通常用于形成地面预警雷达系统的射程虚假目标。这种干扰的频移值大于移动目标的多普勒频移值,抑制频移干扰的关键因素是频移值估计。但是,在低脉冲或中脉冲重复频率(PRF)模式下,由于速度模糊性,估计准确的频移是一项挑战。为了解决这个问题,基于歧义函数理论设计了一种新颖的稀疏多普勒敏感波形,其基本思想是设计一个对特定多普勒敏感但对其他多普勒不敏感的波形。因此,该波形可以明确地识别目标的特定多普勒。为了在实践中应用设计的波形,提供了基于波形分集技术和稀疏多普勒敏感波形族的检测和估计处理流程。通过仿真实验验证了所提方法的有效性,得出的结论是,该方法的优点是即使在低PRF的情况下,也可以用很少的脉冲来确定目标的特定多普勒。

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