METHOD FOR SPATIAL POLARIZATION COMPENSATION OF JAMMING

IF 0.2 Q4 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE
D. Piza, G. V. Moroz
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引用次数: 0

Abstract

Context. To protect radars from active noise interference (jamming) acting along the side lobes of the antenna pattern, spatial signal filtering is used, which is realized by using diversity reception of the useful signal and interference. In this case, the difference in the directions of interference and signal makes it possible to compensate for interference and detect a useful signal. However, in the case where the source of interference is in the main lobe, the differences between the desired signal and the interference are reduced. This leads to significant distortion of the antenna main lobe pattern. As a result, the accuracy of angular coordinates measurement deteriorates, as well as the sensitivity of the receiving radar device. The article proposes a new method for spatial polarization processing of radar signals, which provides compensation for active noise interference both as from the directions of the side lobes and from the direction of the main beam of the antenna pattern. Objective. The goal is to develop a method for spatial polarization processing of radar signals under the influence of active noise interference both along the side lobes of the antenna pattern and along the main lobe. Method. The method is implemented by using structural adaptation of the noise protection device, depending on the direction of the interference. In this case, the control signal for structural adaptation is formed according to the magnitude of the current spatial filter weighting coefficient value. Results. A block diagram of a spatial polarizing filter which provides compensation for active noise interference acting both on the side lobes and on the main lobe of the radar antenna pattern. The mathematical model of the compensation unit that implements the structural adaptation of the spatial polarization filter has been developed. Under the conditions of the first special polarization basis, the efficiency of noise suppression acting along the main lobe of the antenna pattern is estimated. Conclusions. The scientific novelty of the research is the development of a new method of spatial polarization processing of radar signals under difficult conditions of radar operation under massive active noise interference. The practical significance of the research is in the development of a block diagram of a spatial polarizing filter that provides compensation for interference both from the direction of the side lobes and from the direction of the main lobe of the antenna pattern. The mathematical model of the filter has been developed. The efficiency of noise suppression under the conditions of the first special polarization basis is estimated.
干扰的空间极化补偿方法
上下文。为了保护雷达免受沿天线方向图旁瓣的有源噪声干扰,利用分集接收有用信号和干扰来实现空间信号滤波。在这种情况下,干扰和信号方向的差异使得补偿干扰和检测有用信号成为可能。然而,在干扰源位于主瓣的情况下,期望信号和干扰之间的差异被减小。这将导致天线主瓣图的显著失真。结果,角坐标测量精度下降,接收雷达装置的灵敏度下降。本文提出了一种新的雷达信号空间极化处理方法,该方法可以补偿来自天线方向图侧瓣方向和主波束方向的有源噪声干扰。目的是研究在天线方向图侧瓣和主瓣有源噪声干扰下雷达信号的空间极化处理方法。该方法通过根据干扰方向对噪声保护装置进行结构自适应来实现。在这种情况下,根据当前空间滤波器加权系数值的大小形成结构自适应的控制信号。空间极化滤波器的框图,它对作用于雷达天线方向图的侧瓣和主瓣上的有源噪声干扰提供补偿。建立了补偿单元的数学模型,实现了空间极化滤波器的结构自适应。在第一特殊极化基条件下,估计了沿天线方向图主瓣的噪声抑制效率。本研究的科学新颖之处在于,提出了在大量有源噪声干扰下雷达工作困难条件下,对雷达信号进行空间极化处理的新方法。该研究的实际意义在于开发了一个空间偏振滤波器的框图,该滤波器可以补偿天线方向图中来自侧瓣方向和主瓣方向的干扰。建立了该滤波器的数学模型。估计了在第一特殊极化基条件下的噪声抑制效率。
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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来源期刊
Radio Electronics Computer Science Control
Radio Electronics Computer Science Control COMPUTER SCIENCE, HARDWARE & ARCHITECTURE-
自引率
20.00%
发文量
66
审稿时长
12 weeks
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