Software-defined energy communication networks: From substation automation to future smart grids

Adam Cahn, Juan Hoyos, Matthew Hulse, Eric Keller
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引用次数: 108

Abstract

Energy communication networks (ECNs) play an integral role in electrical substations. Substations host many Intelligent Electronic Devices (IEDs) that monitor the state of the electricity infrastructure. This critical data is packaged and transmitted between multiple IEDs for proper system monitoring and control. The modern network that interconnects IEDs, while a significant improvement over the historic serial interconnection, has many challenges which have yet to be addressed - ranging from setup complexity to security policies. In this paper we propose that software-defined networking can alleviate many of today's problems and create a network which can evolve with changing technologies and needs. We demonstrate an auto-configuring substation network which eliminates many substation network management issues. Our prototype is built using a Ryu-based, software-defined network controller and tested with actual IEDs used in substations. We also discuss how our software-defined energy communication network (SDECN) architecture not only solves problems of today, but enables substation networks to easily evolve with the rapid evolution of the smart grid.
软件定义能源通信网络:从变电站自动化到未来智能电网
能源通信网络(ecn)在变电站中起着不可或缺的作用。变电站拥有许多智能电子设备(ied)来监控电力基础设施的状态。这些关键数据被打包并在多个ied之间传输,以便进行适当的系统监视和控制。连接ied的现代网络虽然比历史上的串行互连有了重大改进,但仍有许多尚未解决的挑战——从设置复杂性到安全策略。在本文中,我们提出软件定义网络可以缓解当今的许多问题,并创建一个可以随着不断变化的技术和需求而发展的网络。我们演示了一个自动配置变电站网络,它消除了许多变电站网络管理问题。我们的原型是使用基于ryu的软件定义网络控制器构建的,并在变电站中使用实际的简易爆炸装置进行了测试。我们还讨论了我们的软件定义能源通信网络(SDECN)架构如何不仅解决当今的问题,而且使变电站网络能够随着智能电网的快速发展而轻松发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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