基于二坐标监视雷达的多雷达系统非相干信号处理

V. Lishchenko, H. Khudov, Volodymyr Hnyria, Andrii Lykianchykov, Ivan Kravchenko, Kristina Tahyan
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引用次数: 0

摘要

本文的研究主题是基于二坐标雷达的多雷达系统中非相干信号的处理方法的发展。其目的是通过将来自各个模块的多雷达系统中的非相干信号组合在一起来提高空域雷达侦察的效率。目的:分析改进空中物体飞行特性的方法,分析低雷达截面积对空中物体的探测质量,研究监视雷达多雷达系统中非相干信号的处理方法。所使用的方法有:系统分析方法、概率论、数理统计、矩阵理论的数学装置、统计无线电工程理论、雷达理论。得到了以下结果:提出了一种基于现有雷达的多雷达系统非相干信号处理方法。研究发现,在非相干信号处理下,4部雷达组成的多雷达系统的信噪比增益效率比单机雷达高11 dB。结论:增加第二雷达对提高信噪比效果最好。建立了多雷达系统的最优雷达数不大于4个。进一步增加雷达数量并不能提供创建系统的实际效益和经济可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Processing of Non-Coherent Signals in a Multi-Radar System Based on Two-Coordinate Surveillance Radars
The subject of study in the article is the development of a method for processing non-coherent signals in a multi-radar system based on two-coordinate radars. The aim is to increasing the efficiency of airspace radar reconnaissance by combining non-coherent signals in a multi-radar system from individual modules. Objectives: analysis of ways for improving the flight characteristics of air objects, analysis of the quality of detection of air objects with low radar cross section, development of a method for processing non-coherent signals in a multi-radar system of surveillance radars. The methods used are: methods of systems analysis, probability theory, mathematical statistics, mathematical apparatus of matrix theory, theory of statistical radio engineering, radar theory. The following results were obtained. A method for processing non-coherent signals in a multi-radar system based on existing radars has been developed. It was found that with non-coherent signal processing, the gain efficiency in the signal-to-noise ratio is 11 dB for a multi-radar system with four radars compared to stand-alone radar. Conclusions: the greatest efficiency for increasing the signal-to-noise ratio was shown by adding second radar. It is established that the optimal number of radars in the multi-radar system is not more than four. Further increase in the number of radars does not provide practical benefits and economic feasibility of creating a system.
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