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New Sensor Technology Integration for safe and efficient e-Navigation

机译:安全高效电子导航的新传感器技术集成

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This paper discusses the relation of new sensor technology on bridge resource management as pertaining to theintegration of new information sources and types for ship navigation in a future e-Navigation environment. An overview of several new technologies will be provided showing how systems and devices currently available in the commercial marketplace are being adapted and used to aid ship navigation planning and decision making. Examples include live Doppler radar useful for coastal navigation available from land-based sources through broadband Internet connections, imagery from unmanned aerial vehicles to aid in ice-navigation in, and forward-looking sonar for navigating in poorly charted, uncharted and other world regions where aids to navigation are not readily available. The use of such innovative methods are not yet covered in IMO Guidelines, as e.g., for Voyage Planning, the Procedures Manual of a ship's Safety Management System or any other document to illustrate the adoption of such technology, but needs to be considered and investigated. However, the implications of introducing such new information sources in terms of bridge watchstander (Officer of the Watch - OOW) workload and training are discussed with respect to existing guidelines and regulations. Further illustration is provided in the context of how such new information sources may be integrated with existing resources to enhance overall navigation situational awareness. This includes the information itself as well as the means and methods used to interact with the OOW in terms of bridge displays, monitors and alarms. Selected specific details of research efforts currently underway will be provided in terms of forward-looking sonar integration into the bridge environment and navigation processes. This will include results obtained from experimental studies in the laboratory as well as on a suitably equipped research vessel test bed. A description of achievements accomplished to date will be provided in terms of tasks performed; the processes and procedures employed to acquire, manage and evaluate these tasks; preliminary results and outcomes achieved; and metrics used to measure these outcomes in terms of determining whether the research goals are achievable. Comparisons between expectations and actual results will be discussed, along with an analysis of risks encountered. Lessons learned are documented regarding errors in input, process, product and/or metrics.
机译:本文讨论了新传感器技术对桥梁资源管理的关系,与未来电子导航环境中的新信息来源和船舶导航类型的整合。将提供几种新技术的概述,展示了商业市场中当前可用的系统和设备正在适应并用于帮助船舶导航计划和决策。例子包括Live多普勒雷达,可通过宽带互联网连接可用于陆地导航,通过宽带互联网连接,从无人机航空公司的图像,帮助冰导航,以及前瞻性的声纳,以便在较差的,未公布的世界地区导航援助导航不容易获得。这种创新方法的使用尚未介绍IMO指南,如例如,用于航行规划,船舶安全管理系统的程序手册或任何其他文件,以说明采用此类技术,但需要考虑和调查。然而,在现有的指导方针和法规讨论了在桥接监视者(手表oow)工作量和培训方面引入这种新信息来源的影响。在这些新信息源的上下文中提供了进一步的图示,这些信息可以与现有资源集成,以增强整体导航情境感知。这包括信息本身以及用于在桥梁显示,监视器和警报方面与oow交互的手段和方法。目前正在进行的研究工作的所选具体细节将在向前看的声纳集成到桥梁环境和导航过程方面提供。这将包括从实验室中的实验研究中获得的结果以及配备适当的研究船测试床。将在执行的任务方面提供到达迄今为止的成就的描述;用于获取,管理和评估这些任务的流程和程序;初步结果和结果;和测量这些结果的指标在确定研究目标是否可实现。将讨论期望与实际结果之间的比较,以及遇到的风险分析。学习的经验教训是关于输入,过程,产品和/或度量标准的错误。

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