LVDC微电网保护方案的分析与设计

R. Lazzari, L. Piegari
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引用次数: 2

摘要

可再生能源的日益扩散正在导致对配电网进行相当大的修订。在这种情况下,采用直流配电网可以为主机容量和能源效率带来好处。然而,这种网络的保护涉及许多挑战,特别是在具有多个馈线的LVDC微电网的情况下。传统的交流电网保护方案不能隔离故障,也不能对直流电网的各部件进行保护。本文分析和设计了一个低压直流微电网,在不同的可再生能源发电机组、储能系统、负载和前端变流器与交流电网存在的情况下的保护方案。所提出的集中保护方案克服了在极对极故障情况下的快速故障清除时间、成本效益和选择性等问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis and Design of the Protection Scheme for a LVDC Microgrid
The growing diffusion of renewable energy sources is leading to a considerable revision of the distribution network. In this context, the adoption of direct current distribution grid can bring benefits to the hosting capacity and energy efficiency. However, the protection of such network involves many challenges, especially in case of LVDC microgrids with more than one feeder. The traditional protection schemes used for AC grid are not able to isolate faults and to protect the components of the DC grid. This paper deals with the analysis and design of the protection scheme for a low voltage DC microgrid, in presence of different renewable generators, energy storage systems, loads and front-end converter with the AC grid. The proposed centralized protection scheme overcomes issues of fast fault clearing time, cost effectiveness and selectivity in the case of pole-to-pole fault.
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