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将基于逆变器的分布式发电机最优并入配电网的多阶段框架。

Multi-stage framework for optimal incorporating of inverter based distributed generator into distribution networks.

作者信息

Hamza Shrouk A, Yousef Mariem Y, Ali A A, Masry Said M El, Mosa Magdi A

机构信息

Electrical Power and Machines Department, Faculty of Engineering, Helwan University, Cairo, Egypt.

出版信息

Sci Rep. 2024 Jun 10;14(1):13280. doi: 10.1038/s41598-024-62708-6.

Abstract

Recently, hydrogen-based distributed generators (DG) have gained significant attention for modern energy generation systems. These modem DGs are typically outfitted with power electronics converters, resulting in harmonic pollution. Furthermore, increasing the growth of modern nonlinear loads may result in exceeding the harmonic beyond the permitted level. This research proposes a framework for optimal incorporation of inverter-based distributed generation (a fuel cell connected to an AC distribution system) for minimizing power losses, enhancing the voltage profile, and limiting both total and individual harmonic distortion according to the IEEE-519 standard. In addition, for accounting system sustainability, the proposed framework considers load variation and the expected rise in demand. Therefore, the suggested framework comprises three stages, which include fundamental and harmonic power flow analysis. The first stage identifies the optimal size and location of the DG in relation to the base load operating condition. While, with the optimal DG of the first stage, the amount of harmonic pollution may violate the limits during a high level of nonlinear load penetration, as a result, the second stage resizes the DG, considering the connection bus of the first stage, to mitigate the harmonics and optimize the system at a higher level of nonlinear load penetration. Both the first and second stages are performed off-line, while the third stage optimizes the system operation during run time according to loading conditions, harmonic pollution, and the available DG capacity of the previous stages. DG's harmonic spectrum is represented according to recently issued IEEE 1547-2018 for permissible DG's current distortion limits. The suggested approach is applied and evaluated using an IEEE 33-bus distribution system for various combinations of linear and nonlinear loads. For run-time operation throughout the day, the presented framework reduces the energy losses from 5.281 to 2.452 MWh/day (about 53.57% energy savings). This saving is associated with voltage profile enhancement without violating the permissible standard levels of harmonics and other system constraints.

摘要

近年来,基于氢的分布式发电机(DG)在现代能源发电系统中受到了广泛关注。这些现代分布式发电机通常配备有电力电子转换器,从而导致谐波污染。此外,现代非线性负载的不断增加可能会导致谐波超过允许水平。本研究提出了一个框架,用于优化基于逆变器的分布式发电(连接到交流配电系统的燃料电池)的并入,以最小化功率损耗、改善电压分布,并根据IEEE-519标准限制总谐波失真和各次谐波失真。此外,为了考量系统的可持续性,所提出的框架考虑了负载变化和预期的需求增长。因此,所建议的框架包括三个阶段,其中包括基波潮流和谐波潮流分析。第一阶段确定分布式发电机相对于基本负载运行条件的最佳尺寸和位置。然而,在第一阶段确定的最佳分布式发电机在高非线性负载渗透率情况下,谐波污染量可能会超出限制,因此,第二阶段在考虑第一阶段连接母线的情况下,对分布式发电机进行重新调整尺寸,以减轻谐波影响,并在更高的非线性负载渗透率水平下优化系统。第一阶段和第二阶段均离线执行,而第三阶段根据负载条件、谐波污染和前阶段可用的分布式发电机容量在运行时优化系统运行。分布式发电机的谐波频谱根据最近发布的IEEE 1547-2018标准中允许的分布式发电机电流失真限制来表示。所建议的方法通过一个IEEE 33节点配电系统针对线性和非线性负载的各种组合进行了应用和评估。对于全天的运行,所提出的框架将能量损耗从5.281兆瓦时/天降低至2.452兆瓦时/天(约节省53.57%的能量)。这种节省与电压分布的改善相关联,同时不违反谐波的允许标准水平和其他系统约束。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b49/11164955/e15fd7f81c68/41598_2024_62708_Fig1_HTML.jpg

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