A Voltage Unbalance Mitigation Technique for Low-voltage Applications with Large Single-phase Loads

S. Negri, G. Superti-Furga, E. Tironi
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Abstract

In this paper a voltage unbalance mitigation technique for low-voltage microgrids or feeders in presence of large single-phase loads is introduced. In order to take maximum advantage of the existing hardware, the proposed solution consists of a sequence-based decentralized voltage control to be embedded in three-phase VSC connecting distributed generation to the considered system. Furthermore, a centralized controller is proposed to define optimal negative and zero sequence voltage reference. Control effectiveness is numerically verified considering a low-voltage feeder case study.
大单相负荷低压应用的电压不平衡缓解技术
本文介绍了一种低压微电网或馈线在存在大单相负荷时的电压不平衡缓解技术。为了最大限度地利用现有硬件,提出的解决方案包括将基于顺序的分散电压控制嵌入到连接分布式发电和所考虑系统的三相VSC中。此外,还提出了一种集中控制器来定义最优负序和零序电压基准。以低压馈线为例,对控制效果进行了数值验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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