Capabilities to use passive measurement systems to detect objects moving in a water region

Q2 Engineering Archives of Transport Pub Date : 2023-11-24 DOI:10.61089/aot2023.bw74g958
Waldemar Mironiuk, K. Buszman
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Abstract

The increase in the use of sea water is the basis for the development of the existing security systems in given areas. Monitoring the navigational situation in a given water area is one of the most important tasks aimed at ensuring the necessary level of safety in maritime traffic. Marine surveillance systems at sea are used for this purpose. As an interesting approach related to the study of the movement of vessels, this paper proposes a method based on the measurement of physical field disturbances generated by objects moving in the sea water. These disturbances can be referred to the upper (air space) and lower (underwater) hemisphere. In the upper hemisphere the motion of the object generates disturbances of the thermal field while in the lower hemisphere disturbances of the acoustic, hydrodynamic, magnetic, electric and seismic fields are generated. Detection of the floating objects and determination of movement parameters is realized mainly by active systems. There are radiolocation systems in the upper hemisphere (radar systems) and echo ranging systems in the lower hemisphere (sonars and echosounders). Monitoring of the upper hemisphere of sea vessels traffic is conducted in a comprehensive manner. The lower hemisphere is in the most cases omitted. Therefore, it is recommended to develop underwater observation systems as a source of additional information about floating objects and thus complement the existing systems used in navigation. However, at present, despite the technological progress, there is a noticeable lack of the comprehensive solutions in the area of monitoring the vessels movement in the underwater space. Therefore, appropriate action should be taken to recognize this technology gap and increasing the safety of vessel traffic. The aim of the article was to present a fully passive, mobile underwater observation system that uses a number of sensors to monitor the underwater environment parameters, the research methodology and analysis of the obtained results. The method of deploying the measurement system at the selected geographical position and the measurement method are described. Based on obtained results, the analysis of sound pressure disturbances caused by passing ships was performed. A feature extraction method was developed to identify a passing vessel based on low frequency signal parameters.
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利用被动测量系统探测水域中移动物体的能力
海水使用量的增加是特定区域现有安全系统发展的基础。监测特定水域的航行状况是确保海上交通安全的最重要任务之一。海上监视系统就是用于这一目的。作为研究船舶运动的一种有趣方法,本文提出了一种基于测量海水中运动物体所产生的物理场干扰的方法。这些干扰可分为上半球(空气空间)和下半球(水下)。在上半球,物体的运动会产生热场干扰,而在下半球则会产生声场、水动力场、磁场、电场和地震场干扰。漂浮物的探测和运动参数的确定主要通过主动系统来实现。上半球有无线电定位系统(雷达系统),下半球有回声测距系统(声纳和回声测深仪)。对上半球的海上船只交通进行全面监测。下半球在大多数情况下被忽略。因此,建议开发水下观测系统,作为有关漂浮物的额外信息来源,从而对导航中使用的现有系统进行补充。然而,尽管技术在不断进步,但目前在监测水下空间船只运动方面明显缺乏全面的解决方案。因此,应采取适当行动,承认这一技术差距,提高船舶航行的安全性。文章旨在介绍一种全被动式移动水下观测系统,该系统使用多个传感器监测水下环境参数、研究方法和对所获结果的分析。文章介绍了在选定地理位置部署测量系统的方法和测量方法。根据获得的结果,对过往船只造成的声压干扰进行了分析。开发了一种特征提取方法,可根据低频信号参数识别过往船只。
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
Archives of Transport
Archives of Transport Engineering-Automotive Engineering
CiteScore
2.50
自引率
0.00%
发文量
26
审稿时长
24 weeks
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