A study of nonlinear DC and AC loads connected to PV microgrid

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Publication Details

Author listChreang S., Kumhom P.

PublisherHindawi

Publication year2018

Start page309

End page313

Number of pages5

ISBN9781538652541

ISSN0146-9428

eISSN1745-4557

URLhttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85050140149&doi=10.1109%2fICBIR.2018.8391212&partnerID=40&md5=512574c87259aba134d35c44946b80db

LanguagesEnglish-Great Britain (EN-GB)


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Abstract

Nonlinear loads are one of the main causes affecting the power quality in the electrical power system. Harmonic distortion is mainly caused by such loads. This paper presents a study of those loads connected to microgrid (MG) of a PV generator (PVG) using computer simulation. A simulation model of PVG is constructed by adopting the existing models of PV modules, boost converter, and inverter. Based on this model, the effect of nonlinear loads to the currents of PVG on both the DC side and AC side are studied. In this study, the nonlinear DC and nonlinear AC loads are connected to the PVG's DC and AC side, respectively. Moreover, we focus on only the nonlinear loads that comprise power switches such as inverter and DC converter. The total distortion of a PVG's current is used as a metric. The results show that, for various load powers, the total distortion of a PVG's current on the DC and AC side caused by nonlinear DC load is as high as 80% and 40%, respectively. The nonlinear AC loads, however, has less effect to the total distortion, which is about 60% and 30% on the DC and AC sides, respectively. ฉ 2018 IEEE.


Keywords

microgridNonlinear loadsPV generator


Last updated on 2023-03-10 at 07:36