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Sea Clutter Cancellation for Passive Radar Sensor Exploiting Multi-Channel Adaptive Filters

机译:利用无源雷达传感器开发多通道自适应滤波器的海杂波消除

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摘要

Sea clutter suppression in passive radar sensor is a challenging problem because the Doppler frequencies of low-velocity sea-surface targets are typically close to the spectrum of the sea clutter. Conventional approaches based on single-channel high-pass filters are effective for clutter suppression only when the clutter is concentrated in low Doppler region. For sea clutter that has a spread spectrum, however, these approaches have to compromise target signal reception. That is, they either form a narrow notch which does not effectively suppress clutter, or generate a broadened null that simultaneously mitigates low-velocity target signals. Therefore, it is desirable to design a filter that forms a notch broad enough to cover the entire clutter spectrum, with the frequency response rising sharply to a high gain outside the clutter band. Toward this end, in this paper, we develop a generalized multi-channel adaptive filter which, by forming multiple sharp notches over a set of discrete frequencies within the clutter spectrum, achieves effective clutter suppression and target signal preservation. We focus on the fast frequency-domain implementation, and the performance analysis in terms of the frequency response, signal energy loss, and computational complexities is also presented. The effectiveness of the proposed approaches is verified using real-data results.
机译:无源雷达传感器中的海杂波抑制是一个具有挑战性的问题,因为低速海面目标的多普勒频率通常接近海杂波的频谱。仅当杂波集中在低多普勒区域时,基于单通道高通滤波器的常规方法才有效抑制杂波。但是,对于具有扩展频谱的海杂波,这些方法必须折衷目标信号的接收。也就是说,它们要么形成不能有效抑制杂波的狭窄切口,要么生成同时缓解低速目标信号的加宽零点。因此,希望设计一种滤波器,该滤波器形成一个足以覆盖整个杂波频谱的陷波,同时频率响应急剧上升到杂波频带外的高增益。为此,在本文中,我们开发了一种通用的多通道自适应滤波器,该滤波器通过在杂波频谱内的一组离散频率上形成多个尖锐的陷波,从而实现有效的杂波抑制和目标信号保留。我们专注于快速的频域实现,并且还针对频率响应,信号能量损失和计算复杂性进行了性能分析。使用实际数据结果验证了所提出方法的有效性。

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