利用多层规划评估电力系统的脆弱性:文献综述

Juan Pablo Hernández Valencia, J. López-Lezama, Bonie Johana Restrepo Cuestas
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引用次数: 1

摘要

脆弱性研究可以确定电力系统中的关键因素,以便采取保护措施,防止可能由自然事件或故意攻击引起的可能导致负荷下降的情况。本文是对后一种问题的文献综述,即拦截问题,该问题假设存在一个以对系统的损害最大化为目标的破坏主体,而网络运营商作为防御主体。这两个智能体的非同时交互产生了一个多级优化问题,文献报道了几种拦截模型和解决方法来解决这个问题。本文的主要贡献是提出了在分析、建模和解决拦截问题时应考虑的因素,包括最常见的解决技术、应用方法和未来的研究。本文献综述发现,该领域的大多数研究都集中在考虑网络线性近似的输电系统分析上,而一些阻断研究使用网络的交流模型或直接从多层角度处理配电网络。该领域未来的挑战包括为网络运营商建模和整合新的防御选项,如分布式发电、需求响应和系统的拓扑重新配置。F系统。
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Assessing the Vulnerability of Power Systems Using Multilevel Programming: A Literature Review
Vulnerability studies can identify critical elements in electric power systems in order to take protective measures against possible scenarios that may result in load shedding, which can be caused by natural events or deliberate attacks. This article is a literature review on the latter kind, i.e., the interdiction problem, which assumes there is a disruptive agent whose objective is to maximize the damage to the system, while the network operator acts as a defensive agent. The non-simultaneous interaction of these two agents creates a multilevel optimization problem, and the literature has reported several interdiction models and solution methods to address it. The main contribution of this paper is presenting the considerations that should be taken into account to analyze, model, and solve the interdiction problem, including the most common solution techniques, applied methodologies, and future studies. This literature review found that most research in this area is focused on the analysis of transmission systems considering linear approximations of the network, and a few interdiction studies use an AC model of the network or directly treat distribution networks from a multilevel standpoint. Future challenges in this field include modeling and incorporating new defense options for the network operator, such as distributed generation, demand response, and the topological reconfiguration of the system.f the system.
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