V. Lishchenko, H. Khudov, Volodymyr Hnyria, Andrii Lykianchykov, Ivan Kravchenko, Kristina Tahyan
{"title":"基于二坐标监视雷达的多雷达系统非相干信号处理","authors":"V. Lishchenko, H. Khudov, Volodymyr Hnyria, Andrii Lykianchykov, Ivan Kravchenko, Kristina Tahyan","doi":"10.1109/PICST51311.2020.9467910","DOIUrl":null,"url":null,"abstract":"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.","PeriodicalId":123008,"journal":{"name":"2020 IEEE International Conference on Problems of Infocommunications. Science and Technology (PIC S&T)","volume":"426 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2020-10-06","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Processing of Non-Coherent Signals in a Multi-Radar System Based on Two-Coordinate Surveillance Radars\",\"authors\":\"V. Lishchenko, H. Khudov, Volodymyr Hnyria, Andrii Lykianchykov, Ivan Kravchenko, Kristina Tahyan\",\"doi\":\"10.1109/PICST51311.2020.9467910\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"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.\",\"PeriodicalId\":123008,\"journal\":{\"name\":\"2020 IEEE International Conference on Problems of Infocommunications. Science and Technology (PIC S&T)\",\"volume\":\"426 1\",\"pages\":\"0\"},\"PeriodicalIF\":0.0000,\"publicationDate\":\"2020-10-06\",\"publicationTypes\":\"Journal Article\",\"fieldsOfStudy\":null,\"isOpenAccess\":false,\"openAccessPdf\":\"\",\"citationCount\":\"0\",\"resultStr\":null,\"platform\":\"Semanticscholar\",\"paperid\":null,\"PeriodicalName\":\"2020 IEEE International Conference on Problems of Infocommunications. 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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.