DC microgrid grounding strategies

J. Mohammadi, F. B. Ajaei, G. Stevens
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引用次数: 9

Abstract

Grounding strategy of a DC microgrid affects the stray current level, the common-mode voltage, the energy supply reliability, personnel/equipment safety and protection system design. Therefore, a comprehensive knowledge of the available grounding strategies and their effects is essential for design and operation of the DC microgrid components and especially its protection. This paper investigates and compares characteristics of different DC microgrid grounding strategies that involve the choice of grounding configurations and grounding devices. The study includes the grounding strategy impacts on line-to-ground (LG) fault detection and protection, transient LG fault current magnitude, stray current level, common mode voltage, personnel/equipment safety, system reliability, service continuity, and insulation requirements. Finally, the strengths and weaknesses of the various grounding strategies are discussed.
直流微电网接地策略
直流微电网的接地策略影响杂散电流水平、共模电压、供电可靠性、人员/设备安全和保护系统设计。因此,全面了解可用的接地策略及其影响对直流微电网组件的设计和运行,特别是其保护至关重要。本文对不同直流微电网接地策略的特点进行了研究和比较,包括接地配置和接地装置的选择。该研究包括接地策略对线路对地(LG)故障检测和保护、瞬态LG故障电流大小、杂散电流水平、共模电压、人员/设备安全、系统可靠性、服务连续性和绝缘要求的影响。最后,讨论了各种接地策略的优缺点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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