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A proposed view of nets and networks aboard new US Navy Platforms

机译:拟议的网络和网络展示新的美国海军平台

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Most U.S.Navy ships host a federation of independently designed systems where data sharing has generally been implemented through point-to-point connectivity, accompanied by complex interface design specifications. Modern networking technology, combined with well-ordered database structures, offers the opportunity for data sharing and system integration. A viable strategy to develop shipboard networks must support transition from closed systems, such as those in-service today, to open systems that will offer adaptability and flexibility. This transition must be made under two constraints. First, until modern replacements are in place, legacy systems must remain operational. Second, modern replacements must be developed within budget and at low risk. These constraints call for a phased transition stategy. This paper describes a philosophy and an approach to put the technology in place to support such a strategy. The strategy can be characterized as follows: all communications between systems occur in the abstract domain of data production and data consumption; there are common data definitions, formats, usage rules, or some accompanying interface translation; a "global data structure," a formal data-exchange paradigm, a separate data-maintenance process, and "data brokers" govern access to the data strucyture. Applicaiton of this strategy is based on structured analysis and separate definitions of "nets", sets of functions which must communicate to fulfill a mission requirement, and "networks", methods by which communications are realized. This approach and teh underlying technology have been formalized and embodied in a project known as the Developmental Command and Control Network (DCCN).
机译:大多数U.S.Navy船舶主持独立设计系统的联合,其中数据共享通常通过点对点连接来实现,伴随着复杂的接口设计规范。现代网络技术与有序数据库结构相结合,为数据共享和系统集成提供了机会。开发船上网络的可行策略必须支持从封闭系统的转换,例如今天的服务,打开将提供适应性和灵活性的系统。此过渡必须在两个约束下进行。首先,直到现代替代到位,遗留系统必须保持运行。其次,必须在预算和低风险范围内开发现代更换。这些约束呼叫分阶段的转换状态。本文介绍了一种哲学,一种方法,使技术能够支持这种策略。该策略可以表征如下:系统之间的所有通信都发生在数据生产和数据消耗的抽象领域;有常见的数据定义,格式,使用规则或一些伴随的界面翻译; “全局数据结构”,正式的数据交换范例,单独的数据维护过程和“数据代理”管理对数据污染措施的访问。该策略的应用是基于结构化分析和“网”的单独定义,必须沟通以满足任务要求和“网络”,实现通信的方法。这种方法和地下技术已经正式化和体现在称为发展命令和控制网络(DCCN)的项目中。

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