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Cyber-physical system testbed for power system monitoring and wide-area control verification

机译:Cyber-physical系统电力系统实验平台监控和广域控制验证

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摘要

The electric power system is intrinsically a cyber-physical system (CPS) with power flowing in the physical system and information flowing in the cyber-network. Testbeds are crucial for understanding the cyber-physical interactions and provide environments for prototyping novel applications. This study proposes a four-layer architecture for CPS testbeds with emphases on communication network emulation and networked physical components. A configurable software-defined network is employed to bridge physical components with wide-area applications for closed-loop control. In order to distribute physically coupled devices into multiple software simulations, this study proposes a data broker setup based on a distributed messaging environment to achieve low-latency data streaming. The decoupled design with data streaming allows for building testbed components as modules and running them in a distributed manner. Case studies verify the data broker setup for low-latency sensing and actuation, as well as the communication emulation setup for the desired network latency. Also illustrated is a replay attack scenario using synchrophasors in the Western Electricity Coordinating Council (WECC) 181-bus system for demonstrating the closed-loop cyber-physical simulation capability of the testbed.
机译:电力系统本质上是一个与电力流动cyber-physical系统(CPS)物理系统和信息的流动cyber-network。cyber-physical交互和理解提供环境原型小说应用程序。体系结构与重点CPS台通信网络仿真和网络物理组件。软件定义网络是用来桥物理与广域应用程序组件闭环控制。物理耦合设备为多个软件数据模拟,本研究提出了一个代理基于分布式消息设置环境来实现低延迟的数据流媒体。流允许构建实验组件在一个分布式模块和运行它们的方式。低延迟的传感和驱动,以及通信仿真所需的设置网络延迟。而使用“同步向量”的攻击场景西部电力协调委员会(本文)181 -公交系统说明了闭环cyber-physical仿真能力试验台。

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