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Connect or Terminate: How CONOPS Drives Design of Sub-Sea Network Systems

机译:连接或终止:Conops如何推动亚海网络系统的设计

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The international emphasis on climate change has prompted numerous initiatives in ocean observation. These initiatives require the widespread use of undersea networks for scientific research. The resulting demand for reliable sub-sea networks installed in a variety of environments poses dramatic design challenges. Designers draw solutions from academic networks such as MARS and VENUS, commercial networks linking oil platforms, and military surveillance systems or undersea ranges. To meet user requirements and answer the technical challenges, system implementers must first understand the network's Concept of Operations (CONOPS) and translate that into specifications, generally drawn from mature technologies, and in certain cases, newer or innovative approaches available to the designer within the allowable risk to the project. The authors submit that placing technology before the CONOPS introduces unappreciated risk into a system solution and omits essential iterative steps in defining the initial system requirements. When a specific technology drives the CONOPS, it sets the system requirements and makes overall performance contingent on the technology's maturity, allowing the specifications to reflect the optimum achievable reliability. This paper advocates rigorous development of the application CONOPS as the first priority, then selecting specifications and technological solutions that achieve risk, cost, and other programmatic requirements. One key risk and cost element common to sub-sea networks is that of cable termination technologies, and this paper presents alternatives to commonly used connector form-factors that can provide system designs alternative solutions to achieve desired CONOPS results.
机译:国际对气候变化的强调促使海洋观察众多举措。这些举措需要广泛使用海底网络进行科学研究。由此产生的各种环境中安装的可靠亚海网络的需求造成了戏剧性的设计挑战。设计人员从学术网络中绘制解决方案,如火星和金星,与石油平台的商业网络,以及军用监测系统或海底范围。为了满足用户的要求并回答技术挑战,系统实施者必须首先了解网络的运营概念(核心),并将其转化为通常从成熟技术中汲取的规格,以及在某些情况下,在某些情况下可用的更新或创新方法允许项目的风险。作者提交了在康截单之前将放置技术引入系统解决方案中的未被珍视的风险,并省略确定初始系统要求的必要迭代步骤。当特定技术驱动康截线时,它设置了系统要求,并使技术成熟的整体性能,允许规格反映出可实现的可靠性。本文主张申请核查的严格发展作为第一优先权,然后选择实现风险,成本和其他程序性要求的规格和技术解决方案。亚海网络共用的一个关键风险和成本元素是电缆终端技术,本文介绍了常用的连接器形状因子的替代方案,可以提供系统设计替代解决方案以实现所需的康乐结果。

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