A Co-simulation Platform for Evaluating Cyber Security and Control Applications in the Smart Grid

E. D. Souza, Omid Ardakanian, I. Nikolaidis
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引用次数: 12

Abstract

The growing adoption of Distributed Energy Re-sources (DER) in low-voltage distribution grids calls for new feedback control algorithms that rely on quasi-real-time data collected by remote sensors. The design and evaluation of such algorithms necessitates a prudent and comprehensive approach since these algorithms require a tight integration of power and communication systems. A simple link failure or a sophisticated cyberattack launched against the grid's monitoring, communication, and control infrastructure could rapidly grow out of control, making the grid unstable. We investigate the design and implementation of a high-fidelity smart grid simulation platform which integrates a network simulator and a power flow simulator using the Mosaik co-simulation framework. The platform allows for evaluating the performance of new control algorithms and understanding dynamics of modern distribution grids. Example case studies are presented to validate the proposed platform.
智能电网中网络安全和控制应用评估的联合仿真平台
随着分布式能源(DER)在低压配电网中的应用越来越广泛,需要新的反馈控制算法,该算法依赖于远程传感器收集的准实时数据。这种算法的设计和评估需要谨慎和全面的方法,因为这些算法需要电力和通信系统的紧密集成。简单的链路故障或针对电网监控、通信和控制基础设施的复杂网络攻击可能会迅速失控,使电网不稳定。我们研究了一个高保真智能电网仿真平台的设计和实现,该平台使用Mosaik联合仿真框架集成了网络模拟器和潮流模拟器。该平台允许评估新的控制算法的性能和理解现代配电网的动态。给出了实例研究来验证所提出的平台。
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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