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A review of coordination strategies and protection schemes for microgrids

机译:微电网协调策略和保护方案的回顾

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摘要

Distributed generation (DG) using renewable energy resources, is intended to reduce the impact of power generation from fossil fuels on climate change. Microgrids (MGs) represent a method of interconnecting several low voltage (LV) renewable energy sources and loads to the distribution system. Multi-microgrids (MMGs) integrate distributed generators (DGs) and MGs with medium voltage (MV) distribution systems. Protection system design for MGs pose significant challenges due to bi-directional flow from DGs as well as lower fault current levels due to the inverter connected DG sources in islanded MGs. This paper reviews the coordination strategies and protection schemes that have been proposed for MGs to address these challenges. The protection coordination strategies based on communication and time grading including their relative performance are described. The advantages and limitations of existing MG protection schemes are discussed. As most of these protection schemes apply to relatively small MGs, they may need to be extended for larger MG configurations in practical power systems. Some future directions for research in the protection system design for both MGs and MMGs are also outlined in this paper.
机译:使用可再生能源的分布式发电(DG)旨在减少化石燃料发电对气候变化的影响。微电网(MG)代表了一种将多个低压(LV)可再生能源和负载互连到配电系统的方法。多微电网(MMG)将分布式发电机(DG)和MG与中压(MV)配电系统集成在一起。 MG的保护系统设计面临巨大挑战,因为来自DG的双向电流以及由于孤岛MG中的逆变器连接了DG源而降低了故障电流水平。本文回顾了为MG解决这些挑战而提出的协调策略和保护方案。描述了基于通信和时间分级的保护协调策略,包括它们的相对性能。讨论了现有MG保护方案的优缺点。由于这些保护方案中的大多数适用于相对较小的MG,因此可能需要将它们扩展为适用于实际电源系统中的较大MG配置。本文还概述了MG和MMG保护系统设计的一些未来研究方向。

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