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A network design algorithm for multicast communication architectures in smart transmission grids

机译:智能传输网格中的多播通信架构网络设计算法

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摘要

In future smart transmission grids, there are distributed applications that will benefit from the deployment of Internet Protocol (IP) multicast technology for communication. Sharing of Routable-Sample Values (R-SV) and Routable-GOOSE among the digital substations for wide-area monitoring, protection, and control (WAMPAC) applications will be needed. Using multicast for distribution of R-SVs is resource-efficient and offers a simpler configuration with only the interested substations needing reconfiguration. However, the demands for such concurrent delivery of R-SV data will put constraints on the underlying supporting networking infrastructure. For example, it must be ensured that the paths taken to route data traffic are within the bounds of delay to achieve the aims of the WAMPAC application. In this paper, we look at the problem of network topology augmentation through link additions. We present a heuristic algorithm that finds a set of links to be added to a network topology such that the multicast distribution tree for a multicast configuration is bounded by latency, which is set as the hop-count threshold. Our results show that by adding a few new links to the network topology, the delay incurred by the multicast traffic from sources to destinations can be reduced.
机译:在未来的智能传输网格中,有分布式应用程序,将从互联网协议(IP)组播技术部署进行通信中受益。将需要在数字变电站中分享可路由 - 样本值(R-SV)和可路由鹅,以进行广域监控,保护和控制(WAMPAC)应用。使用多播进行R-SVS的分布是资源效率的,并且只提供更简单的配置,只有需要重新配置的感兴趣的变电站。但是,对R-SV数据的这种并发交付的需求将对底层支持网络基础设施的限制。例如,必须确保路由数据流量的路径在延迟的范围内,以实现Wampac应用的目的。在本文中,我们通过链接添加来看看网络拓扑增强的问题。我们介绍了一种启发式算法,该算法发现要添加到网络拓扑的一组链接,使得组播配置的组播分配树被延迟界定,该延迟被设置为跳数阈值。我们的研究结果表明,通过添加一些新的网络拓扑链接,可以减少从源到目的地的多播流量所产生的延迟。

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