A simple method for estimating the effectiveness of reactive power‐based low‐voltage ride‐through support of the distributed energy resources

Abstract The increasing number of distributed energy resources (DERs) leads to the need for DER that can provide ancillary service, such as low‐voltage ride‐through (LVRT) voltage support. The support is made to improve the short‐term voltage stability in power systems. Recently, DER LVRT voltage su...

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Main Authors: Akbar Swandaru, Mihai D. Rotaru, Jan K. Sykulski
Format: Article
Language:English
Published: Wiley 2021-04-01
Series:IET Renewable Power Generation
Online Access:https://doi.org/10.1049/rpg2.12095
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spelling doaj-9303e69b96a24c02bb091818fe1d993a2021-08-02T08:30:35ZengWileyIET Renewable Power Generation1752-14161752-14242021-04-011561149116210.1049/rpg2.12095A simple method for estimating the effectiveness of reactive power‐based low‐voltage ride‐through support of the distributed energy resourcesAkbar Swandaru0Mihai D. Rotaru1Jan K. Sykulski2School of Electronics and Computer Science University of Southampton Southampton UKSchool of Electronics and Computer Science University of Southampton Southampton UKSchool of Electronics and Computer Science University of Southampton Southampton UKAbstract The increasing number of distributed energy resources (DERs) leads to the need for DER that can provide ancillary service, such as low‐voltage ride‐through (LVRT) voltage support. The support is made to improve the short‐term voltage stability in power systems. Recently, DER LVRT voltage support through reactive power regulation are becoming common. Designing LVRT voltage support is highly influenced by the accuracy of the modelling and the data needed. However, in some cases, the required modelling can challenge the computational complexity, effort, and required data. Nevertheless, modelling the systems through an oversimplification may result in inaccuracies and hypothetical solution. Thus, the best compromise between model accuracy and simplicity will alleviate the problem. The study presents a methodology for estimating the effectiveness of the support. Unlike the commonly computer‐assisted approach, such as the dynamic RMS simulation, the benefit of the methodology is on the computing process, which is much simpler since the dynamic DER modelling work is not needed, and the evaluation of the effectiveness can be achieved even when the grid information is incomplete. Its accuracy is validated against typical RMS simulation results obtained using PowerFactory DIgsilent software for well‐characterised networks.https://doi.org/10.1049/rpg2.12095
collection DOAJ
language English
format Article
sources DOAJ
author Akbar Swandaru
Mihai D. Rotaru
Jan K. Sykulski
spellingShingle Akbar Swandaru
Mihai D. Rotaru
Jan K. Sykulski
A simple method for estimating the effectiveness of reactive power‐based low‐voltage ride‐through support of the distributed energy resources
IET Renewable Power Generation
author_facet Akbar Swandaru
Mihai D. Rotaru
Jan K. Sykulski
author_sort Akbar Swandaru
title A simple method for estimating the effectiveness of reactive power‐based low‐voltage ride‐through support of the distributed energy resources
title_short A simple method for estimating the effectiveness of reactive power‐based low‐voltage ride‐through support of the distributed energy resources
title_full A simple method for estimating the effectiveness of reactive power‐based low‐voltage ride‐through support of the distributed energy resources
title_fullStr A simple method for estimating the effectiveness of reactive power‐based low‐voltage ride‐through support of the distributed energy resources
title_full_unstemmed A simple method for estimating the effectiveness of reactive power‐based low‐voltage ride‐through support of the distributed energy resources
title_sort simple method for estimating the effectiveness of reactive power‐based low‐voltage ride‐through support of the distributed energy resources
publisher Wiley
series IET Renewable Power Generation
issn 1752-1416
1752-1424
publishDate 2021-04-01
description Abstract The increasing number of distributed energy resources (DERs) leads to the need for DER that can provide ancillary service, such as low‐voltage ride‐through (LVRT) voltage support. The support is made to improve the short‐term voltage stability in power systems. Recently, DER LVRT voltage support through reactive power regulation are becoming common. Designing LVRT voltage support is highly influenced by the accuracy of the modelling and the data needed. However, in some cases, the required modelling can challenge the computational complexity, effort, and required data. Nevertheless, modelling the systems through an oversimplification may result in inaccuracies and hypothetical solution. Thus, the best compromise between model accuracy and simplicity will alleviate the problem. The study presents a methodology for estimating the effectiveness of the support. Unlike the commonly computer‐assisted approach, such as the dynamic RMS simulation, the benefit of the methodology is on the computing process, which is much simpler since the dynamic DER modelling work is not needed, and the evaluation of the effectiveness can be achieved even when the grid information is incomplete. Its accuracy is validated against typical RMS simulation results obtained using PowerFactory DIgsilent software for well‐characterised networks.
url https://doi.org/10.1049/rpg2.12095
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