调频共频雷达的噪声干扰

M. Inggs, C. Tong, D. O’Hagan, Urs Bonigert, U. Siegenthaler, Christof Schupbach, H. Pratisto
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引用次数: 7

摘要

共控雷达(CRs)是一类电磁传感器,它利用其他系统的发射来实现其功能,而不会对发射器产生任何影响或与发射器合作。共用雷达(CR)系统的干扰,以及可能的ECCM对这种干扰的响应,在公开文献中并没有得到更多的参考。我们研究了具有多接收机配置(单个发射站点,许多空间分布的接收机)的FM波段共情雷达的具体情况,并发现尽管适度的干扰器功率可以非常有效地干扰CR,但未知的共情雷达(CR)的几何形状和工作频率将使其在实践中难以干扰。简单的零转向由CR接收器是非常有效的。我们还注意到,CR系统需要出色的电子支持措施(ESM)来意识到电子攻击。本文回顾了战术形势,以及非常稀疏的文献。接着对噪声干扰的影响进行了分析,然后对有和没有接收机零转向的干扰进行了仿真,以及一些自保护干扰。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Noise jamming of a FM band commensal radar
Commensal Radars (CRs) are a class of EM sensor that use the emissions of other systems to fulfill their function, without having any impact or collaboration with the emitter of opportunity. The jamming of Commensal Radar (CR) systems, and possible ECCM responses to such jamming have not received more than a passing reference in the open literature. We examine a specific case of an FM Band Commensal radar with a multi-receiver configuration (single transmit site, many spatially distributed receivers) and find that although modest jammer power can be very effective in jamming the CR, the unknown geometry and frequencies of operation of the Commensal Radar (CR) will make it difficult to jam in practice. Simple null steering by the CR receivers is very effective. We also note that the CR system requires excellent Electronic Support Measures (ESM) to be aware of electronic attack. The paper reviews the tactical situation, and the very sparse literature. This is followed by some analysis of the effect of noise jamming, followed by simulations of jamming, with and without receiver null steering, as well as some self-protection jamming.
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