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Power System Design for Resilience and Flexibility Against Extreme Weather Events

机译:用于抵御极端天气事件的灵活性和灵活性的电源系统设计

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Recent challenges from severe weather events call for an adaptation in power systems planning methods, to ensure the sustainability of the resulting plans and the resilience of the power system against natural threats. Whereas studies have shown the importance of considering operational flexibility as an integral part of the design of power systems with a high share of renewable energy sources, very few works have incorporated the resilience against severe weather threats directly into the system design phase. We propose a comprehensive flexibility and resilience modeling and optimization framework for power systems planning considering extreme weather scenarios. A set of piece-wise linear models are developed to calculate the impact of extreme heat waves and drought events on the performance of the power generation units and on the system load. We propose a method to integrate the extreme climate impact within the power system planning model and investigate the results obtained compared to conventional planning methods under real future climate projections.
机译:恶劣天气事件带来的最新挑战要求对电力系统的规划方法进行调整,以确保所制定计划的可持续性以及电力系统抵御自然威胁的能力。尽管研究表明将操作灵活性作为具有大量可再生能源份额的电力系统设计不可或缺的一部分的重要性,但很少有作品将抵御恶劣天气威胁的适应性直接纳入系统设计阶段。我们为考虑极端天气情况的电力系统规划提出了一个全面的灵活性和弹性建模和优化框架。开发了一套分段线性模型,以计算极端热浪和干旱事件对发电单元性能和系统负载的影响。我们提出了一种将极端气候影响整合到电力系统规划模型中的方法,并研究在实际未来气候预测下与传统规划方法相比所获得的结果。

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