A Novel Power Scheduling Mechanism for Islanded DC Microgrid Cluster
Extension of the main grid to remote areas is economically not feasible. To electrify remote areas, one of the best choices is to install Renewable Energy Sources (RES) as a distributed generation (DG) and thus form a microgrid (MG) in islanded (Stand-alone) mode. In islanded mode, the MG has no sup...
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doaj-cda43662f1904e9c853c844b536062382020-11-25T03:42:27ZengMDPI AGSustainability2071-10502020-08-01126918691810.3390/su12176918A Novel Power Scheduling Mechanism for Islanded DC Microgrid ClusterAbdul Wahid0Javed Iqbal1Affaq Qamar2Salman Ahmed3Abdul Basit4Haider Ali5Omar M. Aldossary6Department of Electrical Engineering, Sarhad University of Science & IT, Peshawar 25000, PakistanDepartment of Electrical Engineering, Sarhad University of Science & IT, Peshawar 25000, PakistanUS-Pakistan Center in Advanced Studies for Energy, University of Engineering and Technology, Peshawar 25000, PakistanDepartment of Computer Systems Engineering, University of Engineering and Technology, Peshawar 25000, PakistanUS-Pakistan Center in Advanced Studies for Energy, University of Engineering and Technology, Peshawar 25000, PakistanDepartment of Electrical & Electronics Engineering Technology, University of Technology, Nowshera 24100, PakistanDepartment of Physics and Astronomy, College of Science, King Saud University, PO Box 2455, Riyadh 11451, Saudi ArabiaExtension of the main grid to remote areas is economically not feasible. To electrify remote areas, one of the best choices is to install Renewable Energy Sources (RES) as a distributed generation (DG) and thus form a microgrid (MG) in islanded (Stand-alone) mode. In islanded mode, the MG has no support from the national grid. Thus, the overloading of islanded DC MG can collapse DC bus voltage and cause fluctuation in the load. Therefore, the power sharing and the interconnection among the microgrid (MG) cluster are necessary for reliable operation. Many methods for power sharing also aim at minimizing circulating currents which cannot be avoided when every MG feeds their load locally. Therefore, the proper power balancing among generation, loads, and in between MG cluster is challenging in islanded topology. This paper presents an intelligent controller for power sharing among PV-based MG clusters with load management of connected load during power deficiency. The priority is given to the local critical load of each MG. The second priority is given to the remaining load of the respective MG. The least priority is given to the loads connected to the neighboring MGs. The results show that the power continuation to the power-deficient load has been maintained when another MG has surplus power. The circulating current losses between the MG cluster has been fully avoided during no power sharing.https://www.mdpi.com/2071-1050/12/17/6918power-sharing algorithmDC microgridpower sharingpower management |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Abdul Wahid Javed Iqbal Affaq Qamar Salman Ahmed Abdul Basit Haider Ali Omar M. Aldossary |
spellingShingle |
Abdul Wahid Javed Iqbal Affaq Qamar Salman Ahmed Abdul Basit Haider Ali Omar M. Aldossary A Novel Power Scheduling Mechanism for Islanded DC Microgrid Cluster Sustainability power-sharing algorithm DC microgrid power sharing power management |
author_facet |
Abdul Wahid Javed Iqbal Affaq Qamar Salman Ahmed Abdul Basit Haider Ali Omar M. Aldossary |
author_sort |
Abdul Wahid |
title |
A Novel Power Scheduling Mechanism for Islanded DC Microgrid Cluster |
title_short |
A Novel Power Scheduling Mechanism for Islanded DC Microgrid Cluster |
title_full |
A Novel Power Scheduling Mechanism for Islanded DC Microgrid Cluster |
title_fullStr |
A Novel Power Scheduling Mechanism for Islanded DC Microgrid Cluster |
title_full_unstemmed |
A Novel Power Scheduling Mechanism for Islanded DC Microgrid Cluster |
title_sort |
novel power scheduling mechanism for islanded dc microgrid cluster |
publisher |
MDPI AG |
series |
Sustainability |
issn |
2071-1050 |
publishDate |
2020-08-01 |
description |
Extension of the main grid to remote areas is economically not feasible. To electrify remote areas, one of the best choices is to install Renewable Energy Sources (RES) as a distributed generation (DG) and thus form a microgrid (MG) in islanded (Stand-alone) mode. In islanded mode, the MG has no support from the national grid. Thus, the overloading of islanded DC MG can collapse DC bus voltage and cause fluctuation in the load. Therefore, the power sharing and the interconnection among the microgrid (MG) cluster are necessary for reliable operation. Many methods for power sharing also aim at minimizing circulating currents which cannot be avoided when every MG feeds their load locally. Therefore, the proper power balancing among generation, loads, and in between MG cluster is challenging in islanded topology. This paper presents an intelligent controller for power sharing among PV-based MG clusters with load management of connected load during power deficiency. The priority is given to the local critical load of each MG. The second priority is given to the remaining load of the respective MG. The least priority is given to the loads connected to the neighboring MGs. The results show that the power continuation to the power-deficient load has been maintained when another MG has surplus power. The circulating current losses between the MG cluster has been fully avoided during no power sharing. |
topic |
power-sharing algorithm DC microgrid power sharing power management |
url |
https://www.mdpi.com/2071-1050/12/17/6918 |
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