Design of Direct Power Control for Distributed Generation Units in Multi-Bus Microgrid

The increasing existence of inverter-based DG units in microgrid applications requires appropriate control methods that can provide high stability and performance of the system. Since the power control in microgrids is imperative and on the other hand, nowadays, the presence of the single-phase DGs...

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Main Authors: SHAKARAMI Mahmoud Reza, SEDAGHATI Reza
Format: Article
Language:English
Published: Editura Universităţii din Oradea 2018-05-01
Series:Journal of Electrical and Electronics Engineering
Subjects:
Online Access:http://electroinf.uoradea.ro/images/articles/CERCETARE/Reviste/JEEE/JEEE_V11_N1_MAY_2018/05paper0619SHAKARAMI.pdf
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spelling doaj-220e329bd4b1451582d5a9c1b3cc671d2020-11-24T23:18:44ZengEditura Universităţii din OradeaJournal of Electrical and Electronics Engineering1844-60352067-21282018-05-011112732Design of Direct Power Control for Distributed Generation Units in Multi-Bus MicrogridSHAKARAMI Mahmoud Reza0SEDAGHATI Reza1Department of Electrical Engineering, Faculty of Engineering, Lorestan University, Khorram Abad, IranDepartment of Electrical Engineering, Faculty of Engineering, Lorestan University, Khorram Abad, IranThe increasing existence of inverter-based DG units in microgrid applications requires appropriate control methods that can provide high stability and performance of the system. Since the power control in microgrids is imperative and on the other hand, nowadays, the presence of the single-phase DGs has increased, so in this paper, an adaptive control scheme based on sliding mode control(SMC) is used to control the active and reactive power components of single-phase and three-phase inverterbased photovoltaics as distributed energy resources (DERs) which simultaneously are located at islanded ac microgrid with multi-bus. The proposed control method shown to be robust, stable and disturbancerejection performance under microgrid parameter uncertainties . The performance of the proposed control approach is evaluated through simulation studies using Matlab/Simulink under a unbalanced load conditions at the microgrid.http://electroinf.uoradea.ro/images/articles/CERCETARE/Reviste/JEEE/JEEE_V11_N1_MAY_2018/05paper0619SHAKARAMI.pdfsingle-phase and three-phase photovoltaicmulti-bus microgridpower controlrobust approach
collection DOAJ
language English
format Article
sources DOAJ
author SHAKARAMI Mahmoud Reza
SEDAGHATI Reza
spellingShingle SHAKARAMI Mahmoud Reza
SEDAGHATI Reza
Design of Direct Power Control for Distributed Generation Units in Multi-Bus Microgrid
Journal of Electrical and Electronics Engineering
single-phase and three-phase photovoltaic
multi-bus microgrid
power control
robust approach
author_facet SHAKARAMI Mahmoud Reza
SEDAGHATI Reza
author_sort SHAKARAMI Mahmoud Reza
title Design of Direct Power Control for Distributed Generation Units in Multi-Bus Microgrid
title_short Design of Direct Power Control for Distributed Generation Units in Multi-Bus Microgrid
title_full Design of Direct Power Control for Distributed Generation Units in Multi-Bus Microgrid
title_fullStr Design of Direct Power Control for Distributed Generation Units in Multi-Bus Microgrid
title_full_unstemmed Design of Direct Power Control for Distributed Generation Units in Multi-Bus Microgrid
title_sort design of direct power control for distributed generation units in multi-bus microgrid
publisher Editura Universităţii din Oradea
series Journal of Electrical and Electronics Engineering
issn 1844-6035
2067-2128
publishDate 2018-05-01
description The increasing existence of inverter-based DG units in microgrid applications requires appropriate control methods that can provide high stability and performance of the system. Since the power control in microgrids is imperative and on the other hand, nowadays, the presence of the single-phase DGs has increased, so in this paper, an adaptive control scheme based on sliding mode control(SMC) is used to control the active and reactive power components of single-phase and three-phase inverterbased photovoltaics as distributed energy resources (DERs) which simultaneously are located at islanded ac microgrid with multi-bus. The proposed control method shown to be robust, stable and disturbancerejection performance under microgrid parameter uncertainties . The performance of the proposed control approach is evaluated through simulation studies using Matlab/Simulink under a unbalanced load conditions at the microgrid.
topic single-phase and three-phase photovoltaic
multi-bus microgrid
power control
robust approach
url http://electroinf.uoradea.ro/images/articles/CERCETARE/Reviste/JEEE/JEEE_V11_N1_MAY_2018/05paper0619SHAKARAMI.pdf
work_keys_str_mv AT shakaramimahmoudreza designofdirectpowercontrolfordistributedgenerationunitsinmultibusmicrogrid
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