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Decentralized operating procedures for orchestrating data and behavior across distributed military systems and assets

机译:用于在分布式军事系统和资产之间协调数据和行为的分散式操作程序

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In this paper, we present a method for a highly decentralized yet structured and flexible approach to achieve systems interoperability by orchestrating data and behavior across distributed military systems and assets with security considerations addressed from the beginning. We describe an architecture of a tool-based design of business processes called Decentralized Operating Procedures (DOP) and the deployment of DOPs onto run time nodes, supporting the parallel execution of each DOP at multiple implementation nodes (fixed locations, vehicles, sensors and soldiers) throughout a battlefield to achieve flexible and reliable interoperability. The described method allows the architecture to; a) provide fine grain control of the collection and delivery of data between systems; b) allow the definition of a DOP at a strategic (or doctrine) level by defining required system behavior through process syntax at an abstract level, agnostic of implementation details; c) deploy a DOP into heterogeneous environments by the nomination of actual system interfaces and roles at a tactical level; d) rapidly deploy new DOPs in support of new tactics and systems; e) support multiple instances of a DOP in support of multiple missions; f) dynamically add or remove run-time nodes from a specific DOP instance as missions requirements change; g) model the passage of, and business reasons for the transmission of each data message to a specific DOP instance to support accreditation; h) run on low powered computers with lightweight tactical messaging. This approach is designed to extend the capabilities of existing standards, such as the Generic Vehicle Architecture (GVA).
机译:在本文中,我们提出了一种高度分散但结构化且灵活的方法的方法,该方法通过从一开始就解决安全性问题来协调跨分布式军事系统和资产的数据和行为,从而实现系统的互操作性。我们描述了一种基于工具的业务流程设计架构,称为去中心化操作程序(DOP),并将DOP部署到运行时节点上,支持在多个实现节点(固定位置,车辆,传感器和士兵)并行执行每个DOP。 ),以实现灵活,可靠的互操作性。所描述的方法允许架构: a)对系统之间数据的收集和传递进行精细控制; b)通过在抽象级别上通过过程语法定义所需的系统行为,从而在战略(或学说)级别上定义DOP,而与实现细节无关; c)通过在战术级别上提名实际的系统接口和角色,将DOP部署到异构环境中; d)快速部署新的DOP以支持新的策略和系统; e)支持DOP的多个实例以支持多个任务; f)随着任务需求的变化,动态地从特定的DOP实例添加或删除运行时节点; g)模拟将每个数据消息传输到特定DOP实例以支持认证的通过和业务原因; h)在具有轻量级战术消息传递的低功耗计算机上运行。此方法旨在扩展现有标准(例如通用车辆体系结构(GVA))的功能。

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