Experimental Validation of an Advanced Load-Shift System Operating as Shunt Active Power Filter

This paper presents a load-shift system with advanced functionalities for the power grid. When compared with the conventional approach, an advanced load-shift system allows the compensation of power quality problems on the power grid side, namely problems related t...

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Main Authors: Ana Rodrigues, Vitor Monteiro, Tiago Sousa, Tiago Alves, J. Pinto, Joao Afonso
Format: Article
Language:English
Published: European Alliance for Innovation (EAI) 2021-07-01
Series:EAI Endorsed Transactions on Energy Web
Subjects:
Online Access:https://eudl.eu/pdf/10.4108/eai.23-7-2021.170558
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spelling doaj-704130509a0f4ba6a6dfd44c1d20d8572021-09-29T07:04:35ZengEuropean Alliance for Innovation (EAI)EAI Endorsed Transactions on Energy Web2032-944X2021-07-0183410.4108/eai.23-7-2021.170558Experimental Validation of an Advanced Load-Shift System Operating as Shunt Active Power FilterAna Rodrigues0Vitor Monteiro1Tiago Sousa2Tiago Alves3J. Pinto4Joao Afonso5ALGORITMI Research Centre, University of Minho, – Guimarães – PortugalALGORITMI Research Centre, University of Minho, – Guimarães – PortugalALGORITMI Research Centre, University of Minho, – Guimarães – PortugalALGORITMI Research Centre, University of Minho, – Guimarães – PortugalALGORITMI Research Centre, University of Minho, – Guimarães – PortugalALGORITMI Research Centre, University of Minho, – Guimarães – PortugalThis paper presents a load-shift system with advanced functionalities for the power grid. When compared with the conventional approach, an advanced load-shift system allows the compensation of power quality problems on the power grid side, namely problems related to current harmonics, current imbalances, and low power factor. The advanced load-shift system is composed by a bidirectional ac-dc converter to interface the power grid and by a bidirectional dc-dc converter to interface an energy storage system. Since the main innovation is related with the power grid interface, the focus of this work is on the analysis of the ac-dc converter, which is based on a three-phase four-leg voltage source converter. A theoretical study and the details concerning the control algorithm are presented and discussed along the paper. A laboratory prototype of the advanced load-shift system was developed, and the main details of implementation are described in the paper. Experimental results obtained with the developed prototype prove that the advanced load-shift system contributes for the technology progress in this area, validating a new operation concept concerning the power quality on the power grid side. For all the operation modes, the system operates with high power factor and the currents on the power grid side are balanced with a low total harmonic distortion and in phase with the respective power grid voltages.https://eudl.eu/pdf/10.4108/eai.23-7-2021.170558advanced load-shift systemp-q theorypower qualityshunt active power filterthree-phase ac-dc converter
collection DOAJ
language English
format Article
sources DOAJ
author Ana Rodrigues
Vitor Monteiro
Tiago Sousa
Tiago Alves
J. Pinto
Joao Afonso
spellingShingle Ana Rodrigues
Vitor Monteiro
Tiago Sousa
Tiago Alves
J. Pinto
Joao Afonso
Experimental Validation of an Advanced Load-Shift System Operating as Shunt Active Power Filter
EAI Endorsed Transactions on Energy Web
advanced load-shift system
p-q theory
power quality
shunt active power filter
three-phase ac-dc converter
author_facet Ana Rodrigues
Vitor Monteiro
Tiago Sousa
Tiago Alves
J. Pinto
Joao Afonso
author_sort Ana Rodrigues
title Experimental Validation of an Advanced Load-Shift System Operating as Shunt Active Power Filter
title_short Experimental Validation of an Advanced Load-Shift System Operating as Shunt Active Power Filter
title_full Experimental Validation of an Advanced Load-Shift System Operating as Shunt Active Power Filter
title_fullStr Experimental Validation of an Advanced Load-Shift System Operating as Shunt Active Power Filter
title_full_unstemmed Experimental Validation of an Advanced Load-Shift System Operating as Shunt Active Power Filter
title_sort experimental validation of an advanced load-shift system operating as shunt active power filter
publisher European Alliance for Innovation (EAI)
series EAI Endorsed Transactions on Energy Web
issn 2032-944X
publishDate 2021-07-01
description This paper presents a load-shift system with advanced functionalities for the power grid. When compared with the conventional approach, an advanced load-shift system allows the compensation of power quality problems on the power grid side, namely problems related to current harmonics, current imbalances, and low power factor. The advanced load-shift system is composed by a bidirectional ac-dc converter to interface the power grid and by a bidirectional dc-dc converter to interface an energy storage system. Since the main innovation is related with the power grid interface, the focus of this work is on the analysis of the ac-dc converter, which is based on a three-phase four-leg voltage source converter. A theoretical study and the details concerning the control algorithm are presented and discussed along the paper. A laboratory prototype of the advanced load-shift system was developed, and the main details of implementation are described in the paper. Experimental results obtained with the developed prototype prove that the advanced load-shift system contributes for the technology progress in this area, validating a new operation concept concerning the power quality on the power grid side. For all the operation modes, the system operates with high power factor and the currents on the power grid side are balanced with a low total harmonic distortion and in phase with the respective power grid voltages.
topic advanced load-shift system
p-q theory
power quality
shunt active power filter
three-phase ac-dc converter
url https://eudl.eu/pdf/10.4108/eai.23-7-2021.170558
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