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Analyse Near Collision Situations of Ships Using Automatic Identification System Dataset

机译:使用自动识别系统数据集分析船舶的近碰撞情况

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Ship-to-ship collision is an area of interest for many stakeholder groups such as ship owners, regulatory authorities and insurers etc. Many researchers have found different methodologies for analysing ship-to-ship collisions. However, analysing ship-to-ship collisions is limited by the number of data points available. As a solution, this study utilises the high data availability in near collision situations since near collisions are more common than the actual ship-to-ship collisions. This paper studies the near ship-to-ship collision situations using Automatic Identification System (AIS) data set. The first part of the study defines a near collision criterion by two existing mathematical and statistical models. Defining this ship domain considers factors such as Speed over Ground (SOG), Course over Ground (COG), width of the ship and the length of the ship etc. In the second part, the study defines the selected ship domain and the near collision criterion with the real-time AIS dataset extracted from the USA coastal area. Application of the ship domain and near collision criterion requires handling a large volume of AIS data. In this study, AIS data of one month on one coastal zone consists of approximately 25 million of data records. And in the final part of the study interprets the descriptive statistics of the identified near collision situations and evaluates four data mining algorithms (C5.0, Support Vector Machines, Naïve Bayes and CART) for predicting the near collisions with the defined criterion.
机译:船对船碰撞是许多利益相关者团体感兴趣的领域,例如船东,监管机构和保险公司等。许多研究人员发现了分析船对船碰撞的不同方法。但是,分析船对船的碰撞受到可用数据点数量的限制。作为解决方案,此研究利用了近碰撞情况下的高数据可用性,因为近碰撞比实际的船对船碰撞更常见。本文使用自动识别系统(AIS)数据集研究了近舰对舰碰撞情况。研究的第一部分通过两个现有的数学和统计模型定义了一个近碰撞准则。定义该船域时要考虑诸如对地速度(SOG),对地航向(COG),船宽和船长等因素。在第二部分中,研究定义了选定的船域和近距离碰撞标准,并从美国沿海地区提取实时AIS数据集。船域和近碰撞准则的应用需要处理大量的AIS数据。在这项研究中,一个沿海地区一个月的AIS数据包含大约2500万条数据记录。在研究的最后一部分中,解释了识别出的近碰撞情况的描述性统计数据,并评估了四种数据挖掘算法(C5.0,支持向量机,朴素贝叶斯和CART),用于根据已定义的准则预测近碰撞。

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