Improved Voltage Unbalance and Harmonics Compensation Control Strategy for an Isolated Microgrid

This paper suggests an enhanced control scheme for a four-leg battery energy storage systems (BESS) under unbalanced and nonlinear load conditions operating in the isolated microgrid. Simplicity, tiny steady-state error, fast transient response, and low total harmonic distortion (THD) are the main a...

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Main Authors: Mohammad Jafar Hadidian Moghaddam, Akhtar Kalam, Mohammad Reza Miveh, Amirreza Naderipour, Foad H. Gandoman, Ali Asghar Ghadimi, Zulkurnain Abdul-Malek
Format: Article
Language:English
Published: MDPI AG 2018-10-01
Series:Energies
Subjects:
Online Access:http://www.mdpi.com/1996-1073/11/10/2688
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spelling doaj-3fdfc6e7d83344f187a50254ba75f8902020-11-25T00:46:48ZengMDPI AGEnergies1996-10732018-10-011110268810.3390/en11102688en11102688Improved Voltage Unbalance and Harmonics Compensation Control Strategy for an Isolated MicrogridMohammad Jafar Hadidian Moghaddam0Akhtar Kalam1Mohammad Reza Miveh2Amirreza Naderipour3Foad H. Gandoman4Ali Asghar Ghadimi5Zulkurnain Abdul-Malek6College of Engineering and Science, Victoria University, Melbourne 3047, AustraliaCollege of Engineering and Science, Victoria University, Melbourne 3047, AustraliaDepartment of Electrical Engineering, Tafresh University, Tafresh 39518-79611, IranInstitute of High Voltage & High Current Faculty of Electrical Engineering Universiti Teknologi Malaysia, Johor 81300, MalaysiaResearch Group MOBI—Mobility, Logistics, and Automotive Technology Research Center, Vrije Universiteit Brussel, Pleinlaan 2, 1050 Brussels, BelgiumElectrical Engineering Department, Faculty of Engineering, Arak University, Arak 3815688349, IranInstitute of High Voltage & High Current Faculty of Electrical Engineering Universiti Teknologi Malaysia, Johor 81300, MalaysiaThis paper suggests an enhanced control scheme for a four-leg battery energy storage systems (BESS) under unbalanced and nonlinear load conditions operating in the isolated microgrid. Simplicity, tiny steady-state error, fast transient response, and low total harmonic distortion (THD) are the main advantages of the method. Firstly, a new decoupled per-phase model for the three-phase four-leg inverter is presented. It can eliminate the effect of power stage coupling on control design; thus, the three-phase four-leg power inverter can be viewed as three single input single output (SISO) control systems. Then, using an improved orthogonal signal generation method, the per-phase model of the four-leg inverter in the stationary and synchronous frame is derived. As the second step, a per-phase multi-loop control scheme for the four-leg inverter under unbalanced load conditions is suggested. The proposed control strategy has the ability to provide balanced output voltages under unbalanced load conditions by avoiding the need to deal with the symmetrical components. Finally, a multi-resonant harmonic compensator is used to actively prevent low-order harmonic currents to distort the output voltages of the three-phase four-leg grid-forming power converter. Simulations results are also presented to verify the performance of the suggested control strategy.http://www.mdpi.com/1996-1073/11/10/2688voltage unbalanceharmonics compensationcontrol strategybattery energy storage systems
collection DOAJ
language English
format Article
sources DOAJ
author Mohammad Jafar Hadidian Moghaddam
Akhtar Kalam
Mohammad Reza Miveh
Amirreza Naderipour
Foad H. Gandoman
Ali Asghar Ghadimi
Zulkurnain Abdul-Malek
spellingShingle Mohammad Jafar Hadidian Moghaddam
Akhtar Kalam
Mohammad Reza Miveh
Amirreza Naderipour
Foad H. Gandoman
Ali Asghar Ghadimi
Zulkurnain Abdul-Malek
Improved Voltage Unbalance and Harmonics Compensation Control Strategy for an Isolated Microgrid
Energies
voltage unbalance
harmonics compensation
control strategy
battery energy storage systems
author_facet Mohammad Jafar Hadidian Moghaddam
Akhtar Kalam
Mohammad Reza Miveh
Amirreza Naderipour
Foad H. Gandoman
Ali Asghar Ghadimi
Zulkurnain Abdul-Malek
author_sort Mohammad Jafar Hadidian Moghaddam
title Improved Voltage Unbalance and Harmonics Compensation Control Strategy for an Isolated Microgrid
title_short Improved Voltage Unbalance and Harmonics Compensation Control Strategy for an Isolated Microgrid
title_full Improved Voltage Unbalance and Harmonics Compensation Control Strategy for an Isolated Microgrid
title_fullStr Improved Voltage Unbalance and Harmonics Compensation Control Strategy for an Isolated Microgrid
title_full_unstemmed Improved Voltage Unbalance and Harmonics Compensation Control Strategy for an Isolated Microgrid
title_sort improved voltage unbalance and harmonics compensation control strategy for an isolated microgrid
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2018-10-01
description This paper suggests an enhanced control scheme for a four-leg battery energy storage systems (BESS) under unbalanced and nonlinear load conditions operating in the isolated microgrid. Simplicity, tiny steady-state error, fast transient response, and low total harmonic distortion (THD) are the main advantages of the method. Firstly, a new decoupled per-phase model for the three-phase four-leg inverter is presented. It can eliminate the effect of power stage coupling on control design; thus, the three-phase four-leg power inverter can be viewed as three single input single output (SISO) control systems. Then, using an improved orthogonal signal generation method, the per-phase model of the four-leg inverter in the stationary and synchronous frame is derived. As the second step, a per-phase multi-loop control scheme for the four-leg inverter under unbalanced load conditions is suggested. The proposed control strategy has the ability to provide balanced output voltages under unbalanced load conditions by avoiding the need to deal with the symmetrical components. Finally, a multi-resonant harmonic compensator is used to actively prevent low-order harmonic currents to distort the output voltages of the three-phase four-leg grid-forming power converter. Simulations results are also presented to verify the performance of the suggested control strategy.
topic voltage unbalance
harmonics compensation
control strategy
battery energy storage systems
url http://www.mdpi.com/1996-1073/11/10/2688
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