智能电网中网络物理系统的策略、建模与安全研究

Qin Wang, Guangyuan Zhang, Fushuan Wen
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引用次数: 14

摘要

一个更可靠、更高效、更有弹性的智能电网依赖于先进信息和通信技术的应用,以支持新的功能和控制。智能电网的关键基础设施由监控、控制、通信协议和软件等主要组成部分组成。集成了这些组件的网络物理系统(CPS)是由脱碳、数字化和去中心化驱动的能源系统预期转型的重要推动者。本文概述了在电力系统中实施CPS的政策驱动因素和障碍。随着分布式能源(DERs)的大规模部署,对智能电网环境中硬件、软件及其交互建模的需求日益增加。本文综述了分布式能源系统中智能CPS的建模及其应用。分布式电源和支持性基础设施的集成使现代电力系统在面对恐怖主义入侵等外部威胁时更加脆弱和不可靠。人们越来越担心电网受到网络攻击的风险。本文综述了关键基础设施识别和保护以及网络攻击风险评估和缓解方法的最新进展。最后,讨论了网络物理能源系统的一些前沿问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A survey on policies, modelling and security of cyber-physical systems in smart grids

A survey on policies, modelling and security of cyber-physical systems in smart grids

A more reliable, efficient, and resilient smart grid depends on the applications of advanced information and communication technologies to support new functions and controls. The critical infrastructure of a smart grid consists of some major components such as monitoring, controls, communication protocol and software. The cyber-physical system (CPS), which integrates these components, is an important enabler for the expected transition of the energy system driven by decarbonization, digitalization and decentralization. This paper provides an overview of the policy drivers and barriers for the implementation of CPS in power systems. With the vast deployment of distributed energy resources (DERs), there is increasing demand to model the hardware, software and their interactions in the smart grid environment. This paper reviews the modelling and applications of intelligent CPS for decentralized energy systems. The integration of DERs and the supportive infrastructure make modern power systems more vulnerable and less reliable to external threats such as terrorist intrusion. There are growing concerns over the risk of cyber-attacks in mart grids. This paper surveys the latest progress on critical infrastructure identification and protection, as well as risk assessment and mitigation methods for cyber-attacks. Finally, some advanced issues in cyber-physical energy systems are addressed.

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