{"title":"在 \"水-空气 \"边界附近的菲涅尔区使用平面线性天线的宽带噪声信号源定位方法","authors":"A. D. Konson, A. A. Volkova","doi":"10.59887/2073-6673.2024.17(1)-7","DOIUrl":null,"url":null,"abstract":" Ways of broadband noise signal reception using flat linear extended antenna in Fresnel zone near surface boundary enabling to determine direction, range to the source and depth of its immersion simultaneously with detection are considered. The effect emerging when signal source and receiver are located near «water-air» interface and two beams arrive from source to receiver (direct beam and beam reflected from the surface) is investigated. The supervisor of compensation of delays of signal arriving to M receivers of the antenna focuses receiving system in the point of the expected positioning of the source. In case of dual-beam signal it may result in emergence of two range focusing points in space. It is shown that focal spots may have high range spreading or practically merge depending on the relative positioning of the source and the receiver. Method of source submergence depth analysis at known ranges to two focal spots is offered for the first case. Method of consolidated signal processing which includes additional scanning of time delays in possible delays of signal between beams with uniform delay for all antenna elements is offered for the case when focal spots are not separated. It is demonstrated that when obtaining maximum signal power entered delay will be functionally connected with depth of immersion of the source that enables carrying out joint determining of direction, ranges and depths of submergence of the source in offered method. Moreover, it is demonstrated that method of consolidated processing enables to increase power of arriving signal up to 50 % in the point of maximum response as compared to conventional signal reception algorithm using flat linear antenna in Fresnel zone.","PeriodicalId":218146,"journal":{"name":"Fundamental and Applied Hydrophysics","volume":"112 24","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2024-04-21","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Broadband noise signal source positioning method using flat linear antenna in Fresnel zone near ‘water-air’ boundary\",\"authors\":\"A. D. Konson, A. A. 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Method of source submergence depth analysis at known ranges to two focal spots is offered for the first case. Method of consolidated signal processing which includes additional scanning of time delays in possible delays of signal between beams with uniform delay for all antenna elements is offered for the case when focal spots are not separated. It is demonstrated that when obtaining maximum signal power entered delay will be functionally connected with depth of immersion of the source that enables carrying out joint determining of direction, ranges and depths of submergence of the source in offered method. 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引用次数: 0
摘要
考虑了在靠近表面边界的菲涅尔区使用扁平线性延伸天线接收宽带噪声信号的方法,从而能够在探测的同时确定信号源的方向、距离及其浸入深度。研究了当信号源和接收器位于 "水-空气 "界面附近,且有两束光束从信号源到达接收器(直接光束和从表面反射的光束)时产生的影响。对到达天线 M 个接收器的信号延迟进行补偿的主管将接收系统聚焦在信号源的预期定位点上。在双光束信号的情况下,可能会在空间出现两个范围的聚焦点。结果表明,根据声源和接收器的相对位置,聚焦点可能会有较高的范围扩散或实际上合并。针对第一种情况,提供了在两个焦点的已知距离上进行声源潜入深度分析的方法。针对焦斑未分离的情况,提供了综合信号处理方法,其中包括对所有天线元件统一延迟的波束间信号可能延迟的时间延迟进行额外扫描。实验证明,在获得最大信号功率时,进入的延迟将与信号源的浸没深度有功能上的联系,这样就能用所提供的方法共同确定信号源的方向、范围和浸没深度。此外,与使用菲涅尔区平面线性天线的传统信号接收算法相比,综合处理方法可将最大响应点的到达信号功率提高 50%。
Broadband noise signal source positioning method using flat linear antenna in Fresnel zone near ‘water-air’ boundary
Ways of broadband noise signal reception using flat linear extended antenna in Fresnel zone near surface boundary enabling to determine direction, range to the source and depth of its immersion simultaneously with detection are considered. The effect emerging when signal source and receiver are located near «water-air» interface and two beams arrive from source to receiver (direct beam and beam reflected from the surface) is investigated. The supervisor of compensation of delays of signal arriving to M receivers of the antenna focuses receiving system in the point of the expected positioning of the source. In case of dual-beam signal it may result in emergence of two range focusing points in space. It is shown that focal spots may have high range spreading or practically merge depending on the relative positioning of the source and the receiver. Method of source submergence depth analysis at known ranges to two focal spots is offered for the first case. Method of consolidated signal processing which includes additional scanning of time delays in possible delays of signal between beams with uniform delay for all antenna elements is offered for the case when focal spots are not separated. It is demonstrated that when obtaining maximum signal power entered delay will be functionally connected with depth of immersion of the source that enables carrying out joint determining of direction, ranges and depths of submergence of the source in offered method. Moreover, it is demonstrated that method of consolidated processing enables to increase power of arriving signal up to 50 % in the point of maximum response as compared to conventional signal reception algorithm using flat linear antenna in Fresnel zone.