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Communications and power to the seafloor: MBARI's Ocean Observing System mooring concept

机译:海底通信和电力:MBARI的海洋观测系统系泊概念

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Operating instrumentation for collecting time-series experimental data from remote benthic sites in the world's oceans has long been a challenging problem for oceanographers. A moored buoy system concept is presented that provides bi-directional near real-time communication to remote benthic instrumentation at flexible sites up to 4000 m deep using an electro-optical anchor cable. Designed to be deployed from regional class vessels, the mooring system is to be one of the main platforms for the MBARI Ocean Observatory System (MOOS) currently under development. The system concept supports a broad range of instrumentation and sampling strategies including benthic instrument clusters covering up to 10 km of seafloor, upper water column instrumentation and future AUV docking operations. Described are the functional requirements of the mooring system, the design approach, the results of the design trade-off studies completed and the resulting mooring concept design.
机译:对于世界海洋学家来说,用于从远洋底栖地点收集时间序列实验数据的操作仪器一直是一个难题。提出了一种系泊浮标系统的概念,该系统使用电光锚缆在深达4000 m的灵活地点向远程底栖仪器提供双向近实时通讯。该系泊系统旨在从区域级船只部署,将成为目前正在开发的MBARI海洋观测系统(MOOS)的主要平台之一。该系统概念支持广泛的仪器仪表和采样策略,包括底栖仪器仪表群(覆盖长达10公里的海底),上水柱仪器仪表和未来的AUV对接操作。描述了系泊系统的功能要求,设计方法,已完成的设计权衡研究的结果以及所产生的系泊概念设计。

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