Impact of Negative-Sequence Voltage on Inverter in an Islanded Microgrid

M. Arifujjaman, R. Salas, A. Johnson, J. Araiza, J. Mauzey
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引用次数: 1

Abstract

Southern California Edison (SCE) is in the development stages on various microgrid (MG) projects aimed at improving resiliency while maintaining grid reliability and safety during planned and unplanned outages, including Public Safety Power Shutoffs (PSPS). This paper aims to recognize the impact of negative-sequence voltage on an inverter for a photovoltaic (PV) based distributed generation connected in an islanded MG. A comprehensive mathematical model of the inverter along with the PV and boost converter is proposed to perform the analytical simulation in Matlab environment. It is established that the inverter design capacity is required to be significantly higher in order to meet the imbalance current caused by only a 2% negative-sequence voltage. Thus, an adequate design of the inverter that meets SCE’s needs is crucial; otherwise, the inverter will shut down prematurely due to the imposed design constraint by the manufacturer. This will hinder the success of current and future SCE-led MG projects.
孤岛微电网负序电压对逆变器的影响
南加州爱迪生公司(SCE)正处于各种微电网(MG)项目的开发阶段,旨在提高弹性,同时在计划和计划外停电期间保持电网的可靠性和安全性,包括公共安全停电(PSPS)。本文旨在研究孤岛MG中光伏分布式发电系统的负序电压对逆变器的影响。建立了逆变器以及PV和升压变换器的综合数学模型,并在Matlab环境下进行了分析仿真。结果表明,为了满足仅2%负序电压引起的不平衡电流,逆变器的设计容量要求显著提高。因此,满足SCE需求的逆变器设计是至关重要的;否则,由于制造商强加的设计约束,逆变器将过早关闭。这将阻碍当前和未来sce主导的MG项目的成功。
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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