On a Modeling Approach to Analyze Resilience of a Smart Grid Infrastructure

S. Chiaradonna, F. Giandomenico, N. Murru
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引用次数: 14

Abstract

The evolution of electrical grids, both in terms of enhanced ICT functionalities to improve efficiency, reliability and economics, as well as the increasing penetration of renewable redistributed energy resources, results in a more sophisticated electrical infrastructure which poses new challenges from several perspectives, including resilience and quality of service analysis. In addition, the presence of interdependencies, which more and more characterize critical infrastructures (including the power sector), exacerbates the need for advanced analysis approaches, to be possibly employed since the early phases of the system design, to identify vulnerabilities and appropriate countermeasures. In this paper, we outline an approach to model and analyze smart grids and discuss the major challenges to be addressed in stochastic model-based analysis to account for the peculiarities of the involved system elements. Representation of dynamic and flexible behavior of generators and loads, as well as representation of the complex ICT control functions required to preserve and/or re-establish electrical equilibrium in presence of changes need to be faced to assess suitable indicators of the resilience and quality of service of the smart grid.
智能电网基础设施弹性分析的建模方法
电网的发展,无论是在增强信息通信技术功能以提高效率、可靠性和经济性方面,还是在可再生再分配能源的不断渗透方面,都导致了更复杂的电力基础设施,这从几个方面提出了新的挑战,包括弹性和服务分析质量。此外,关键基础设施(包括电力部门)日益具有的相互依赖性的存在加剧了对先进分析方法的需要,这些方法可能在系统设计的早期阶段就采用,以确定脆弱性和适当的对策。在本文中,我们概述了一种建模和分析智能电网的方法,并讨论了在基于随机模型的分析中需要解决的主要挑战,以考虑所涉及系统元素的特殊性。为了评估智能电网的弹性和服务质量的适当指标,需要对发电机和负载的动态和灵活行为的表示,以及在发生变化时保持和/或重新建立电力平衡所需的复杂ICT控制功能的表示进行评估。
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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