Fault Restoration Strategy for Multienergy Distribution Systems With Consideration of Resilience Enhancement

IF 2.1 Q3 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE IEEE Canadian Journal of Electrical and Computer Engineering Pub Date : 2024-04-19 DOI:10.1109/ICJECE.2024.3380062
Tianchi Tong;Yuwei Yan;Yuan Xia
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Abstract

The traditional methods of improving the resilience of the distribution network have certain limitations, while the integrated energy system makes the grid tightly coupled with other energy systems, providing a new way to improve the resilience of the distribution network. Aiming at the problem of large-scale power outages caused by frequent extreme weather events in recent years, this article proposes a fault recovery strategy for multienergy distribution systems considering enhanced resilience. For the first time, this article considers the load conversion of multienergy forms on the demand side in the process of distribution network restoration. During the period from the occurrence of multiline faults in the distribution network to the fault repaired, this article adopts reconstruction and island division, and cooperates with the multienergy form load conversion on the demand side to reduce the loss of electrical loads. In this article, the calculation example of the modified 69 bus system shows the method adopted in this article reduces the load loss rate by about 30% compared with the traditional scheme, which verifies that load conversion of multienergy forms on the demand side can effectively alleviate the problem of insufficient energy supply when the traditional distributed generation (DG) is used to construct island.
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多能源配电系统故障恢复策略与复原力增强考虑
提高配电网抗灾能力的传统方法存在一定局限性,而综合能源系统使电网与其他能源系统紧密耦合,为提高配电网抗灾能力提供了新途径。针对近年来极端天气事件频发导致的大面积停电问题,本文提出了一种考虑增强抗灾能力的多能源配电系统故障恢复策略。本文首次考虑了配电网恢复过程中需求侧多能源形式的负荷转换。在配电网多线路故障发生到故障修复期间,本文采用重建和孤岛划分的方式,配合需求侧的多能源形式负荷转换,以减少电力负荷的损失。本文以改造后的 69 母线系统为例进行计算,结果表明本文采用的方法比传统方案降低了约 30% 的负荷损失率,验证了在传统分布式发电(DG)建岛的情况下,需求侧多能形式负荷转换能有效缓解能源供应不足的问题。
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