ICT modeling for integrated simulation of cyber-physical power systems

A. Ştefanov, Chen-Ching Liu
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引用次数: 28

Abstract

A cyber-physical system is a large and complex infrastructure. Due to the increasing connectivity, the power and cyber systems become more interdependent. Models of the interactions are needed between the power devices and information and communication technology (ICT). A broad range of cyber attacks has become a serious concern. Cyber attacks must be simulated to analyze the consequences on the power grid. Thus, the cyber system must be modeled explicitly and integrated with the power grid model. This paper describes the development and simulation of a novel co-simulation framework that integrates both the cyber and power systems. The objective is to implement the ICT model for real-time interactions with both the power grid and transmission operator. Different industrial grade environments have been developed to simulate the cyber-power interactions. ICT events that may affect the stability of the grid, e.g., cyber attacks, are simulated at the cyber system layer, and their impact analysis is conducted at the power system layer. The proposed co-simulation framework is validated with the IEEE 39-bus system.
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网络物理电力系统集成仿真的ICT建模
网络物理系统是一个庞大而复杂的基础设施。由于连通性的增加,电力系统和网络系统变得更加相互依存。电力设备与信息通信技术之间的相互作用需要建立模型。大范围的网络攻击已成为一个严重问题。必须模拟网络攻击,以分析对电网的影响。因此,网络系统必须明确建模,并与电网模型集成。本文描述了一种集成网络和电力系统的新型协同仿真框架的开发和仿真。目标是实现与电网和输电运营商实时交互的ICT模型。已经开发了不同的工业级环境来模拟网络力量的相互作用。在网络系统层模拟网络攻击等可能影响电网稳定的ICT事件,在电力系统层进行影响分析。采用IEEE 39总线系统对所提出的联合仿真框架进行了验证。
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