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Performance assessment of topologically diverse power systems subjected to hurricane events

机译:遭受飓风事件影响的拓扑多样的电力系统的性能评估

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Large tropical cyclones cause severe damage to major cities along the United States Gulf Coast annually. A diverse collection of engineering and statistical models are currently used to estimate the geographical distribution of power outage probabilities stemming from these hurricanes to aid in storm preparedness and recovery efforts. Graph theoretic studies of power networks have separately attempted to link abstract network topology to transmission and distribution system reliability. However, few works have employed both techniques to unravel the intimate connection between network damage arising from storms, topology, and system reliability. This investigation presents a new methodology combining hurricane damage predictions and topological assessment to characterize the impact of hurricanes upon power system reliability. Component fragility models are applied to predict failure probability for individual transmission and distribution power network elements simultaneously. The damage model is calibrated using power network component failure data for Harris County, TX, USA caused by Hurricane Ike in September of 2008, resulting in a mean outage prediction error of 15.59% and low standard deviation. Simulated hurricane events are then applied to measure the hurricane reliability of three topologically distinct transmission networks. The rate of system performance decline is shown to depend on their topological structure. Reliability is found to correlate directly with topological features, such as network meshedness, centrality, and clustering, and the compact irregular ring mesh topology is identified as particularly favorable, which can influence regional lifeline policy for retrofit and hardening activities to withstand hurricane events.
机译:大型热带气旋每年对美国墨西哥湾沿岸的主要城市造成严重破坏。当前,使用各种工程和统计模型来估计由这些飓风引起的停电概率的地理分布,以帮助做好风暴准备和恢复工作。电力网络的图论研究已分别尝试将抽象网络拓扑与输配电系统的可靠性联系起来。但是,很少有工作采用这两种技术来解开由风暴,拓扑和系统可靠性引起的网络损坏之间的紧密联系。这项研究提出了一种新方法,该方法结合了飓风损害预测和拓扑评估,以表征飓风对电力系统可靠性的影响。组件脆弱性模型可用于同时预测各个输配电网络元素的故障概率。使用美国艾克飓风在2008年9月造成的美国得克萨斯州哈里斯县的电网组件故障数据对损坏模型进行了校准,得出的平均停机预测误差为15.59%,标准偏差低。然后将模拟的飓风事件应用于测量三个拓扑不同的传输网络的飓风可靠性。系统性能下降的速度取决于其拓扑结构。发现可靠性与拓扑特征(例如网络网格,中心性和群集)直接相关,并且紧凑的不规则环形网格拓扑被认为特别有利,这可能会影响区域生命线策略以进行翻新和加固活动,以抵御飓风事件。

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