基于变压器的可控分布式能源资源微电网接地方案

IF 3.3 Q3 ENERGY & FUELS
Dingrui Li;Yiwei Ma;Yu Su;Chengwen Zhang;Lin Zhu;He Yin;Fred Wang;Leon M. Tolbert
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引用次数: 0

摘要

微电网 (MG) 在孤岛模式下可能会失去主配电网提供的接地,从而导致设备绝缘损坏、人员危险和保护故障。现有的微电网接地方案包括基于接地变压器的方案和基于分布式能源资源(DER)变压器的方案。然而,基于接地变压器的方案会增加 MG 的成本,而 DER 变压器方案在并网模式下会影响主电网。此外,未来的 MG 可能有多个源位置。在每个源位置,源和关键负载都有可能作为子 MG 运行,单独运行时需要接地。在这种情况下,现有接地方案的缺点将被进一步放大。本文提出了一种基于变压器的新型可控 DER 接地方案,即在变压器的中性线上添加一个可控开关。该方案可在并网模式下禁用接地功能,在孤岛模式下通过改变变压器连接来启用接地功能。建议的方法可以避免对主配电网的影响,并且无需额外的变压器。本文提供了拟议接地方案的设计方法。在现实的 MG 模型上进行了仿真验证,并进行了实验验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Controllable Distributed Energy Resource Transformer-Based Grounding Scheme for Microgrids
A microgrid (MG) may lose its grounding provided by the main distribution grid in islanded mode, which could cause equipment insulation damage, hazards to personnel, and protection malfunction. Existing MG grounding schemes include the grounding transformer-based scheme and distributed energy resource (DER) transformer-based scheme. However, the grounding transformer-based scheme will increase MG’s cost, and the DER transformer approach will affect the main grid in the grid-connected mode. Moreover, future MGs may have multiple source locations. In each source location, the source and critical load can potentially operate as a sub-MG, requiring a grounding when it stands alone. In this scenario, the drawbacks of existing grounding schemes will be further magnified. In this paper, a novel controllable DER transformer-based grounding scheme is proposed, where a controllable switch is added to the neutral wire of the transformer. The proposed scheme can disable grounding capability in the grid-connected mode and enable it in the islanded mode by changing the transformer connection. The proposed approach can avoid impacts on the main distribution grid and eliminate the need for additional transformers. The design methodology of the proposed grounding scheme is provided. Simulation verification is conducted on a realistic MG model and experimental verification is conducted.
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来源期刊
CiteScore
7.80
自引率
5.30%
发文量
45
审稿时长
10 weeks
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