增强配电系统对火山爆发后火山泥流恢复能力的分布式发电

M. Saltos-Rodríguez, M. Aguirre-Velasco, A. Velásquez-Lozano, D. Ortiz-Villalba, A. Villamarín-Jácome
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引用次数: 3

摘要

配电系统基础设施不断暴露于一系列高影响低概率(HILP)事件中,例如自然灾害。由于这些极端事件的频繁发生,配电系统的恢复能力变得至关重要。本文提出了一种新的分布式发电(DG)优化规划方法,以增强PDS对火山爆发后可能发生的火山泥流影响的恢复能力。引入易损性曲线的概念来确定元件系统的不可用性。所提出的方法包括随机优化问题(SOP)和蒙特卡罗模拟方法(MCS),以考虑两个不确定性水平:火山泥流的速度和密度。我们的建议应用于IEEE 37节点测试馈线。结果表明:模拟情景下,实际PDS恢复时间内的平均无供能为1.37 MWh, DG优化规划恢复时间内的平均无供能为1.02 MWh。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distributed Generation for Resilience Enhancement on Power Distribution System Against Lahars Occurrence After a Volcanic Eruption
Distribution systems infrastructure is exposed continuously to a range of high-impact low-probability (HILP) events, such as natural hazards. Due to the increased frequency of these extreme events, the resilience of the power distribution system (PDS) is becoming critical. In this paper, a novel methodology is proposed for the optimal planning of distributed generation (DG) to enhance the resilience of PDS against the impact of lahars, which can occur following a volcanic eruption. The concept of vulnerability curves is introduced to determine the unavailability of the elements system. The proposed methodology includes a stochastic optimization problem (SOP) and Monte Carlo simulation method (MCS) to consider two uncertainties levels: the speed and density of lahars. Our proposal is applied to the IEEE 37-node test feeder. The results demonstrate that the average energy not supplied (ENS) during the restoration time obtained from the simulated scenarios is 1.37 MWh for the actual PDS and 1.02 MWh when optimal planning of DG is applied.
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