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首页> 外文期刊>IEEE Transactions on Aerospace and Electronic Systems >Clutter and jammer multipath cancellation in airborne adaptive radar
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Clutter and jammer multipath cancellation in airborne adaptive radar

机译:机载自适应雷达的杂波和干扰多径抵消

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摘要

Airborne surveillance radars must detect and localize targets in diverse interference environments consisting of ground clutter, conventional jamming, and terrain scattered jammer multipath. Multidimensional adaptive filtering techniques have been proposed to adaptively cancel this interference. However, a detailed analysis that includes the effects of multipath nonstationarity has been elusive. This work addresses the nonstationary nature of the jammer multipath and its impact on clutter cancellation and target localization. It is shown that the weight updating needed to track this interference will also modulate sidelobe signals. At the very least, this complicates the localization of targets. At the worst, it also greatly complicates the rejection of clutter. Several techniques for improving cancellation of jammer multipath and clutter are proposed, including 1) weight vector interpolation, extrapolation, and updating; 2) filter architecture, constraint, and beamspace selection; 3) prefilters; 4) 3-D STAP architectures; and 5) multidimensional sidelobe target editing.
机译:机载监视雷达必须在包括地物杂波,常规干扰和地形分散干扰多径在内的各种干扰环境中检测和定位目标。已经提出了多维自适应滤波技术来自适应地消除这种干扰。但是,包括多径非平稳性影响的详细分析是难以捉摸的。这项工作解决了干扰多径的非平稳性质及其对杂波消除和目标定位的影响。结果表明,跟踪此干扰所需的权重更新还将调制旁瓣信号。至少,这会使目标的定位复杂化。在最坏的情况下,它也使抑制杂波变得非常复杂。提出了几种改善干扰多径和杂波消除的技术,包括:1)权向量插值,外推和更新; 2)滤波器架构,约束和波束空间选择; 3)预过滤器; 4)3-D STAP架构;和5)多维旁瓣目标编辑。

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