论文标题

在静态和瞬态岛屿安全限制下,用于弹性的微电网投资计划的随机刺激方法

A Stochastic-Robust Approach for Resilient Microgrid Investment Planning Under Static and Transient Islanding Security Constraints

论文作者

Nakiganda, Agnes Marjorie, Dehghan, Shahab, Markovic, Uros, Hug, Gabriela, Aristidou, Petros

论文摘要

在计划微电网(MGS)的投资时,通常包括静态安全限制,以确保其弹性和在岛上模式下运行的能力。但是,由于短暂的响应,未定规划的岛化事件可能会触发毫克内部分布式能源(DER)的断开,从而导致部分或全部损失负载。在本文中,提出了一个最小的杂交,混合,随机投资计划模型,以获得弹性的毫克,考虑到高影响力 - 低频(HILF)和低影响力高频(LIHF)的不确定性。 HILF的不确定性与灾难性事件发生后MG的外岛岛化有关,LIHF不确定性与相关的负载和Der代表有关,其特征是一组场景。两种不确定性下的MG弹性可以通过将静态和瞬态岛化约束纳入拟议的投资模型来确保。包括瞬态响应约束的包含导致最小值 - 最大的问题与非线性动态频率响应模型,该模型无法通过可用的优化工具直接解决。因此,在本文中,提出了三阶段解决方案方法来找到最佳投资计划。在CIGRE 18节点分布网络上测试了所提出的算法的性能。

When planning the investment in Microgrids (MGs), usually static security constraints are included to ensure their resilience and ability to operate in islanded mode. However, unscheduled islanding events may trigger cascading disconnections of Distributed Energy Resources (DERs) inside the MG due to the transient response, leading to a partial or full loss of load. In this paper, a min-max-min, hybrid, stochastic-robust investment planning model is proposed to obtain a resilient MG considering both High-Impact-Low-Frequency (HILF) and Low-Impact-High-Frequency (LIHF) uncertainties. The HILF uncertainty pertains to the unscheduled islanding of the MG after a disastrous event, and the LIHF uncertainty relates to correlated loads and DER generation, characterized by a set of scenarios. The MG resilience under both types of uncertainty is ensured by incorporating static and transient islanding constraints into the proposed investment model. The inclusion of transient response constraints leads to a min-max-min problem with a non-linear dynamic frequency response model that cannot be solved directly by available optimization tools. Thus, in this paper, a three-stage solution approach is proposed to find the optimal investment plan. The performance of the proposed algorithm is tested on the CIGRE 18-node distribution network.

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