基于模型的复原力评估和威胁缓解:基于敏感性的方法

E. Ciapessoni, D. Cirio, A. Pitto, S. Massucco, M. Sforna, P. Marcacci
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引用次数: 5

摘要

极端天气事件可能导致电力系统出现大负荷中断;这就要求对可能引起多种依赖的突发事件的自然威胁的脆弱性进行分析。鉴于此类中断的高社会和经济成本,输电系统运营商(tso)对预测这些潜在的关键情况以及应用适当的预防和/或纠正措施来提高系统的恢复能力很感兴趣。本文提出了一种深入的弹性评估方法,适用于在运行规划模式下预测将影响电力系统的最具风险的突发事件,并适用于在工程模式下,通过评估不同威胁强度和组件脆弱性假设下的系统响应来分析“如果”情景。本文还提供了一个框架的操作和强化对策,可以提高系统的弹性。特别是,湿暴风雪是研究中的威胁,考虑了两项缓解措施:线路导体的疏冰涂层和常规发电机的预防性重新调度,以确保最小的防冰电流。对意大利超高压电网模型进行的不同威胁强度的敏感性分析有助于确定适当的缓解措施。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Model based resilience assessment and threats mitigation: a sensitivity based approach
Extreme weather events can determine large load disruptions on power systems; this calls for the analysis of the vulnerabilities to natural threats which may cause multiple, dependent contingencies. Given the high social and economic costs of such disruptions, the Transmission System Operators (TSOs) are interested in predicting these potential critical scenarios and in applying suitable preventive and/or corrective countermeasures to increase system resilience. The paper presents an in-depth resilience assessment methodology suitable, in operational planning mode, to predict the most risky contingencies which will affect the power system and, in the engineering mode, to analyse “what if” scenarios, by evaluating the system response under different assumptions for threat intensity and component vulnerability. The paper also provides a framework for operational and hardening countermeasures which can boost system resilience. In particular, the wet snow storm is the threat under study, and two mitigation measures are accounted for: the ice-phobic coatings of line conductors and the preventive redispatching of conventional generators to assure the minimum anti-icing currents. The sensitivity analyses carried out for different threat intensities on a model of the Italian EHV grid can help identify adequate mitigation measures.
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