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M-ESTIMATION AS A TOOL SUPPORTING A VESSEL TRAFFIC CONTROLLER IN THE VTS SYSTEM

机译:M估计作为在VTS系统中支持船只交通管制员的工具

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摘要

In order to improve maritime safety and the efficiency of vessel traffic, systems supervising vessel traffic, i.e. VTS (Vessel Traffic Service), started to be created. These systems are aimed to control vessel traffic in waters where traffic congestion, a large concentration of vessels or the presence of navigational hazards creates a risk of collision or stranding. VTS systems constitute maritime safety centres and they must be equipped with appropriate devices in order to be fully functional. Among devices that provide information about vessels are coastal radar stations which are located around a monitored sea area. This kind of spatial arrangement of these stations can be used to simultaneously obtain information about every vessel, but such observations may be fraught with serious errors. Therefore, the estimation methods that are employed and developed in geodesy can be used to improve the accuracy with which a vessel's position is determined. The Interactive Navigational Structure, i.e. IANS, is an example of how these methods can be applied in navigation; this term has already been introduced into the literature (Czaplewski, 2004). The text below presents the theoretical assumptions underlying the use of IANS as a tool supporting a vessel traffic controller using the VTS system in his/her work. This presentation is supported by a numerical test that was performed in the waters of the Bay of Gdansk which are covered by the VTS system.
机译:为了提高海上安全和提高船舶通行效率,开始建立监督船舶通行的系统,即VTS(船舶通行服务)。这些系统旨在控制交通拥堵,船只集中或航行危险会造成撞车或搁浅的水域中的船只交通。 VTS系统构成海上安全中心,并且必须配备适当的设备才能正常运行。提供有关船只信息的设备中包括位于受监控海域周围的沿海雷达站。这些站的这种空间布置可用于同时获取有关每艘船的信息,但是这种观察可能会充满严重的错误。因此,大地测量学中采用和发展的估计方法可以用来提高确定船只位置的准确性。交互式导航结构,即IANS,是如何将这些方法应用于导航的示例;该术语已被引入文献(Czaplewski,2004)。下文介绍了将IANS用作支持使用VTS系统的船舶交通管制员的工具的理论假设。此演示文稿由在VTS系统覆盖的格但斯克湾水域中进行的数值测试支持。

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