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Supervisory control and data acquisition system for energy extracting vessel navigation

机译:能量提取船航行的监控和数据采集系统

摘要

A Supervisory Control And Data Acquisition (SCADA) system guides navigation of a vessel enabled to extract energy from wind and/or water currents primarily in offshore marine environments. An exemplary SCADA system could embody server and client software applications running on microprocessor systems at a remote control central service logging and energy distribution facility, and the vessel itself. The remote control service facility runs Human Machine Interface (HMI) software in the form of a Graphical User Interface (GUI) allowing choices to maximize system performance. The central server accesses information to control vessel position based on transmitted Global Position Satellite (GPS) data from the vessel, and weather information from the Geographic Information System (GIS) provided by multiple spatial temporal data sources. A server-side optimization algorithm fed the parameters delivered from vessel aerodynamic/hydrodynamic performance simulation software models, the vessel onboard sensor data, and integrated real-time weather and environmental data determines an optimal navigation through weather systems and presents choices to the HMI.
机译:监督控制和数据采集(SCADA)系统指导船舶航行,主要在近海海洋环境中从风和/或水流中提取能量。示例性SCADA系统可以体现在远程控制中央服务记录和能量分配设施处的微处理器系统上运行的服务器和客户端软件应用程序以及船舶本身。远程控制服务设施以图形用户界面(GUI)的形式运行人机界面(HMI)软件,允许进行选择以最大化系统性能。中央服务器访问信息以基于从船舶发送来的全球定位卫星(GPS)数据以及来自由多个空间时间数据源提供的地理信息系统(GIS)的天气信息来控制船舶位置。服务器端优化算法提供了从船舶气动/水力性能模拟软件模型传递的参数,船舶机载传感器数据以及集成的实时天气和环境数据,从而确定了通过天气系统的最佳导航,并向HMI提出了选择。

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