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首页> 外文期刊>European Journal of Operational Research >A robust decision-support method based on optimization and simulation for wildfire resilience in highly renewable power systems & nbsp;
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A robust decision-support method based on optimization and simulation for wildfire resilience in highly renewable power systems & nbsp;

机译:一种基于高可再生电力系统野火弹性优化和仿真的鲁棒决策方法 

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摘要

Wildfires can pose a major threat to the secure operation of power networks. Chile, California, and Australia have suffered from recent wildfires that have induced considerable power supply cuts. Further, as power systems move to a significant integration of variable renewable energy sources, successfully managing the impact of wildfires on the power supply can become even more challenging due to the joint uncertainty in wildfire trajectories and the power injections from wind and solar farms. Motivated by this, this paper develops a practical decision-support approach that concatenates a stochastic wildfire simulation method with an attacker-defender model that aims to find a worst-case realization for (i) transmission line and generator contingencies, out of those that can potentially be affected by a given wildfire scenario, and for (ii) wind and solar power trajectories, based on a max-min structure where the inner min problem represents a best adaptive response on generator dispatch actions. Further, this paper proposes an evaluation framework to assess the power supply security of various power system topology configurations, under the assumption of limited transmission switching capabilities, and based on the simulation of several wildfire evolution scenarios. Extensive computational experiments are carried out on two representations of the Chilean power network with up to 278 buses, showing the practical effectiveness of the proposed approach for enhancing wildfire resilience in highly renewable power systems.
机译:野火可能对电网的安全运行构成重大威胁。智利、加利福尼亚和澳大利亚最近遭受了野火袭击,导致大量电力供应中断。此外,随着电力系统向多种可再生能源的重大整合发展,由于野火轨迹的联合不确定性以及风能和太阳能发电厂的电力注入,成功管理野火对电力供应的影响可能会变得更具挑战性。基于此,本文开发了一种实用的决策支持方法,该方法将随机野火模拟方法与攻击者-防御者模型相结合,旨在找出(i)输电线路和发电机意外事故,以及(ii)风力和太阳能发电轨迹的最坏情况实现,基于最大-最小结构,其中内部最小问题表示对发电机调度动作的最佳自适应响应。此外,本文还提出了一个评估框架,在传输切换能力有限的假设下,基于对几种野火演化场景的模拟,评估各种电力系统拓扑结构的供电安全性。在智利电网的两个代表上进行了大量的计算实验,最多有278条母线,表明了所提出的方法在提高高度可再生电力系统的野火恢复能力方面的实际有效性。

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