Multi-channel interference source detector

V. N. Antipov, S.L. Ivanov, E. Koltyshev, V. Mukhin, A. Frolov, V.Т. Yankovskiy
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Abstract

Modern radars, along with the detection and measurement of target coordinates against the background of interference, must solve the problem of detecting radio emission sources and measuring their coordinates. Detection of interference, as well as targets, in the radar is provided in the main (total) channel based on the analysis of the rangefinder-Doppler portrait of the received signal. The main disadvantage of such a detector is that the interference coming along the side lobes of the sum antenna and falling into the dip of the antenna radiation pattern may not be detected. Therefore, the problem arises of developing and analyzing algorithms for detecting interference in a radar with several receiving channels. The article discusses the logical, energy, correlation and eigenvalues of the cross-correlation matrix of the received signals interference detectors for two receiving channels. Their characteristics are given. It is shown that two-channel interference detectors based on the analysis of the eigenvalues of the cross-correlation matrix have the highest efficiency. Energy and logical algorithms are quite a bit inferior to them. The developed algorithms make it possible to effectively detect radio emission sources even when they are in the dip of one of the antenna patterns.
多通道干扰源检测器
现代雷达在对干扰背景下的目标坐标进行探测和测量的同时,必须解决射电辐射源的探测和坐标测量问题。雷达中的干扰和目标检测是基于对接收信号的测距仪-多普勒图像的分析,在主(总)信道中提供的。这种检测器的主要缺点是沿着和天线的侧瓣而落入天线辐射方向图倾角的干扰可能无法被检测到。因此,开发和分析具有多个接收通道的雷达干扰检测算法的问题就出现了。本文讨论了两个接收通道的接收信号干涉检测器的相互关矩阵的逻辑、能量、相关性和特征值。给出了它们的特性。结果表明,基于互相关矩阵特征值分析的双通道干涉检测器具有最高的检测效率。能量和逻辑算法比它们差很多。所开发的算法可以有效地检测无线电发射源,即使它们处于其中一个天线方向图的倾角。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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