微电网应对极端事件的弹性运行规划

Cunzhi Zhao, J. Silva-Rodríguez, Xingpeng Li
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引用次数: 3

摘要

本文提出了一种新的极端事件下的微电网生存率(SR)弹性指标,并提出了一种新的弹性运行规划(ROP)算法,以最大化所提出的弹性指标SR。所提出的ROP算法可以纳入预定的逆变器故障概率,并相应地生成多个场景,以优化极端事件下的弹性运行。实施的ROP算法包括两个主要步骤:(i)弹性运营规划的优化;(ii)如果根据步骤1的分析,最小SR不满足,则预防性弹性增强。以典型微电网为研究对象,将所提出的ROP算法与传统的微电网能量管理模型进行比较。结果表明,ROP算法实现了增强的弹性运行,通过SR对弹性进行量化证明了这一点。此外,与传统的MEM相比,所提出的ROP算法能够获得更大的总体SR,并且随着逆变器故障概率的增加,使用所提出的ROP的好处也会增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Resilient Operational Planning for Microgrids Against Extreme Events
This paper proposes a novel resilience index, a microgrid survivability rate (SR) under extreme events, and then proposes a novel Resilient Operational Planning (ROP) algorithm to maximize the proposed resilience index SR. The proposed ROP algorithm can incorporate predetermined inverter failure probabilities and generate multiple scenarios accordingly to optimize resilient operations during an extreme event. The implemented ROP algorithm consists of two main steps: (i) optimization of resilient operational planning, and (ii) preventive resilience enhancement if minimum SR is not met per the analysis in step 1. A typical microgrid (MG) is studied to compare the proposed ROP algorithm against a traditional microgrid energy management (MEM) model. Results indicate that an enhanced resilience operation is achieved by the ROP algorithm, which is demonstrated by the quantification of resilience via the SR. Moreover, the proposed ROP algorithm is able to obtain a greater SR overall compared to that achieved by the traditional MEM, and this benefit of using the proposed ROP increases as the inverter failure probabilities increase.
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