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Modeling the OHL vulnerability to strong wind

机译:模拟OHL遭受强风的脆弱性

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Extreme weather events are a major concern for Transmission System Operators (TSOs) because of their increasing frequency and disruptive effects on system infrastructure and load supply. Modelling the component vulnerabilities to natural threats is a fundamental pillar to face such events in a resilience perspective. In particular, advanced analytical models of component vulnerability to threats have an important advantage over statistical models: being less sensitive to classification errors, they may favour the development of approaches and tools to support operators’ choices in power system management. Among all natural threats, strong wind represents a very important cause of damages to HV and EHV lines, together with wet snow, in the Italian EHV grid. This paper proposes analytical models to simulate the vulnerability of overhead lines to the direct and indirect effects of strong wind, considering three major subcomponents of the line namely phase conductors, shield wires, and tower supports. Simulations performed on a set of HV and EHV lines from a portion of the Italian grid demonstrate the ability of the model to quantify the benefit of specific mitigation measures on the line vulnerability to strong wind.
机译:极端天气事件是输电系统运营商(TSO)的主要关注问题,因为它们的出现频率增加,并且对系统基础设施和负载供应造成破坏性影响。对组件针对自然威胁的脆弱性进行建模是从复原力角度应对此类事件的基本支柱。特别是,与威胁模型相比,高级的组件易受攻击性分析模型具有重要优势:对分类错误不太敏感,它们可能会支持开发方法和工具来支持操作员在电力系统管理中的选择。在所有自然威胁中,强风是造成意大利EHV电网中HV和EHV线路以及湿雪损坏的非常重要的原因。本文提出了分析模型,以考虑架空线的三个主要子组件,即相线,屏蔽线和塔架支架,来模拟架空线对强风的直接和间接影响的脆弱性。在意大利电网的一部分上对一组HV和EHV线路进行的仿真表明,该模型能够量化针对线路对强风的脆弱性的特定缓解措施的收益。

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