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Development of a Plug-and-Play Monitoring System for Cabled Observatories in the East China Sea

机译:东海有线天文台即插即用监控系统的开发

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Seafloor observatories enable long term, continuous and multidisciplinary observations, promising major breakthroughs in marine environment research. The effort to remotely control in situ multidisciplinary equipment performing individual and cooperative tasks is both a challenge and a guarantee for the stable operations of functional observatories. With China starting to establish ocean observatory sensor networks, in this study we describe a monitoring system for cabled observatories in the East China Sea (ESOMS) that enables this effort in a plug and play way. An information oriented monitoring architecture for ESOMS was first introduced, derived from a layered control model for ocean observatory sensor network. The architecture contained three components and enabled bidirectional information flow of observation data and commands, based on which architecture components were designed to enable plug-and-play control within related model layers. A control method enabled by general junction box (GJB) and ocean sensor markup language (OSML) was thus proposed as the plug-and-play solution for implementing ESOMS. The GJB-OSML enabled control method (GOE Control Method) mainly actualized two processes, one of which was that the in situ GJB interfaced and represented every attached sensor as a Sensing Endpoint in the cabled observatory network. The other process was that the remote ESOMS utilized the same IP/Port related information modeled by OSML to create/operate a Function Node acted as agent of the in situ sensor. A case study for using ESOMS in the Xiaoqushan Seafloor Observatory was finally presented to prove its performance and applicability. Given this successful engineering trial, the ESOMS design and implementation could be applicable and beneficial for similar efforts in future construction of seafloor observatory network both at home and abroad.
机译:海底观测站可以进行长期,连续和多学科的观测,有望在海洋环境研究中取得重大突破。远程控制现场多学科设备执行个人和合作任务的努力既是功能性天文台稳定运行的挑战,也是保证。随着中国开始建立海洋天文台传感器网络,在本研究中,我们描述了一种用于东海有线天文台(ESOMS)的监控系统,该系统以即插即用的方式实现了这一目标。首次引入了ESOMS的面向信息的监视体系结构,该体系结构源自海洋观测传感器网络的分层控制模型。该体系结构包含三个组件,并启用了观察数据和命令的双向信息流,基于这些体系结构组件被设计为可以在相关模型层内实现即插即用控制。因此,提出了一种由通用接线盒(GJB)和海洋传感器标记语言(OSML)启用的控制方法,作为实现ESOMS的即插即用解决方案。支持GJB-OSML的控制方法(GOE控制方法)主要实现了两个过程,其中之一是原位GJB接口并将每个连接的传感器表示为有线天文台网络中的传感端点。另一个过程是远程ESOMS利用OSML建模的相同的IP /端口相关信息来创建/操作充当原位传感器代理的功能节点。最后,以小曲山海底天文台使用ESOMS为例,证明了其性能和适用性。鉴于这项成功的工程试验,ESOMS的设计和实施可能会适用,并有利于将来在国内外海底天文台网络建设中进行类似的努力。

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