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Multifunctional cyber-physical system testbed based on a source-grid combined scheduling control simulation system

机译:基于源网格联合调度控制仿真系统的多功能网络物理系统试验台

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摘要

To establish a real closed-loop control centre testing environment for a cyber–physical power system, a cyber–physical testbed was established by integrating industry supervisory control and data acquisition with a source-grid co-simulation system in the laboratory at the North China Electric Power University. The testbed employs a multi-time scale interface and virtual remote terminal units to overcome the shortcomings of the real-time digital simulator. Physical simulation was performed with a source-grid co-simulation system based on a real-time digital simulator. Control system simulation was implemented using a commercial energy management system. The testbed was also integrated with a wide-area-network emulator to provide wide-area-network emulation and advanced attack simulation. An overview of the system and the key technologies used in the cyber–physical system testbed is provided in this study. In addition, two specific cyberattacks are simulated to demonstrate the capacity of the cyber–physical system testbed.
机译:为了为网络-物理电源系统建立一个真正的闭环控制中心测试环境,通过将工业监督控制和数据采集与源-网格协同仿真系统集成在华北的实验室中,建立了一个网络-物理测试台。电力大学。该测试台采用了多时标界面和虚拟远程终端单元,以克服实时数字模拟器的缺点。物理仿真是使用基于实时数字仿真器的源-网格协同仿真系统执行的。控制系统仿真是使用商业能源管理系统实现的。该测试平台还与广域网仿真器集成在一起,以提供广域网仿真和高级攻击仿真。本研究概述了该系统以及在网络物理系统测试平台中使用的关键技术。此外,还模拟了两个特定的网络攻击,以演示网络物理系统测试平台的能力。

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