电力系统可靠灵活的通信:SDN/OpenFlow容错组播

T. Pfeiffenberger, J. Du, Pedro Bittencourt Arruda, A. Anzaloni
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引用次数: 48

摘要

我们的工作评估了软件定义网络(SDN)用于可靠通信的使用。可靠通信已成为许多领域的重要课题,包括能源通信网络或更普遍的自动化控制网络。电网正在向智能电网发展,这在很大程度上取决于可靠性、鲁棒性和资源的优化利用。另一方面,SDN提出的通信与网络控制的分离,为网络的可靠和灵活提供了新的可能性。在这项工作中,我们展示了如何使用领先的SDN框架OpenFlow来解决比变电站使用的现有技术更好的鲁棒多播问题。我们的解决方案使用OpenFlow的快速故障转移组特性,提供单链路容错,数据包丢失少,并且可以提供有效使用资源且不太可能失败的路由。鲁棒最短路径路由和最小生成树广播路由是特殊情况。我们还将展示如何扩展此解决方案以处理更多的链路故障(甚至任意数量的链路故障)或提供更有效的路由。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reliable and flexible communications for power systems: Fault-tolerant multicast with SDN/OpenFlow
Our work evaluates the use of software-defined networking (SDN) for reliable communication. Reliable communication has become an important topic in many areas, including energy communication networks or, more generally, automation control networks. Electrical grids are developing into smart grids, which depend heavily on reliability, robustness and optimized resource usage. On the other side, the separation of communication and network control proposed by SDN opens new possibilities for reliable and flexible networks. In this work, we show how OpenFlow, the leading SDN framework, could be used to solve the problem of robust multicast better than existing technologies used by substations. Our solution uses the fast-failover groups feature of OpenFlow to provide one-link fault tolerance with little packet loss and can provide routes that use resources efficiently and are less likely to fail. Robust shortest path routing and minimum spanning tree broadcast routing come as special cases. We also show how this solution can be extended to handle more link failures (even an arbitrary number of them) or to provide more efficient routes.
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