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MIDDLEWARE FOR SMART HETEROGENEOUS CRITICAL INFRASTRUCTURE NETWORKS INTERCOMMUNICATION

机译:中间件,用于智能异构基础设施网络互连

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Critical Infrastructures (CIs) are physical assets and organizations responsible for the production and distribution of society’s vital goods and services. The increasing interconnection of CIs has resulted in interdependencies which might lead to propagation of failure from one infrastructure to another. Most of current critical infrastructures are equipped with data collection and communication capabilities that can be used to inform and warn other CIs about such events and alarms. In this paper, a publish/subscribe-based communication system among dissimilar (heterogeneous) CIs is presented. The proposed system improves the manageability of CIs by providing an exchange medium for status information and alerts. It achieves this via a uniform architecture, within and across infrastructure boundaries, that maintains data restrictions that reflect real life organizational, administrative, and policy boundaries. Finally, the proposed system is modeled using the OMNET++ simulation framework, and a network performance study investigating scalability is presented. Simulation results showed that system scalability depends on service time per packet, subscription density, and number of clients per router.
机译:关键基础设施(CI)是负责生产和分配社会重要产品和服务的有形资产和组织。 CI之间日益增加的互连已导致相互依赖性,这可能导致故障从一个基础架构传播到另一个基础架构。当前大多数关键基础设施都配备了数据收集和通信功能,可用于通知和警告其他CI有关此类事件和警报。在本文中,提出了一种基于发布/订阅的不同(异构)CI之间的通信系统。所提出的系统通过提供状态信息和警报的交换介质来提高CI的可管理性。它通过在基础架构边界之内和之间的统一体系结构来实现此目的,该体系结构维护反映实际组织,管理和策略边界的数据限制。最后,使用OMNET ++仿真框架对提出的系统进行建模,并进行了研究可扩展性的网络性能研究。仿真结果表明,系统可伸缩性取决于每个数据包的服务时间,订阅密度和每个路由器的客户端数量。

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