A three-stage approach for resilience-constrained scheduling of networked microgrids

This paper deals with optimal scheduling of networked microgrids (NMGs) considering resilience constraints. The proposed scheme attempts to mitigate the damaging impacts of electricity interruptions by effectively exploiting NMG capabilities. A three-stage framework is proposed. In Stage 1, the opti...

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Main Authors: Saeed Teimourzadeh, Osman Bulent Tor, Mahmut Erkut Cebeci, Adela Bara, Simona Vasilica Oprea
Format: Article
Language:English
Published: IEEE 2019-01-01
Series:Journal of Modern Power Systems and Clean Energy
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9028826/
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spelling doaj-f3aec6006a4c4c42afe92fcd625b054a2021-04-23T16:12:34ZengIEEEJournal of Modern Power Systems and Clean Energy2196-54202019-01-017470571510.1007/s40565-019-0555-09028826A three-stage approach for resilience-constrained scheduling of networked microgridsSaeed Teimourzadeh0https://orcid.org/0000-0001-8295-8404Osman Bulent Tor1Mahmut Erkut Cebeci2Adela Bara3Simona Vasilica Oprea4Engineering, Procurement, Research and Analysis (EPRA) Electric Energy Co.,Ankara,TurkeyEngineering, Procurement, Research and Analysis (EPRA) Electric Energy Co.,Ankara,TurkeyEngineering, Procurement, Research and Analysis (EPRA) Electric Energy Co.,Ankara,TurkeyFaculty of Cybernetics, Statistics and Economic Informatics, Bucharest University of Economic Studies (BUES),Department of Economic Informatics and Cybernetics,Bucharest,RomaniaFaculty of Cybernetics, Statistics and Economic Informatics, Bucharest University of Economic Studies (BUES),Department of Economic Informatics and Cybernetics,Bucharest,RomaniaThis paper deals with optimal scheduling of networked microgrids (NMGs) considering resilience constraints. The proposed scheme attempts to mitigate the damaging impacts of electricity interruptions by effectively exploiting NMG capabilities. A three-stage framework is proposed. In Stage 1, the optimal scheduling of NMGs is studied through determining the power transaction between the NMGs and upstream network, the output power of distributed energy resources (DERs), commitment status of conventional DERs as well as demand-side reserves. In Stage 2, the decisions made at Stage 1 are realized considering uncertainties pertaining to renewable generation, market price, power consumption of loads, and unintentional islanding of NMGs from the upstream network and resynchronization. Stage 3 deals with uncertainties of unintentional islanding of each MG from the rest of islanded NMGs and resynchronization. The problem is formulated as a mixed-integer linear programming problem and its effectiveness is assured by simulation studies.https://ieeexplore.ieee.org/document/9028826/Networked microgrid (NMG)Distributed energy resource (DER)Power system resiliencePoint estimate method
collection DOAJ
language English
format Article
sources DOAJ
author Saeed Teimourzadeh
Osman Bulent Tor
Mahmut Erkut Cebeci
Adela Bara
Simona Vasilica Oprea
spellingShingle Saeed Teimourzadeh
Osman Bulent Tor
Mahmut Erkut Cebeci
Adela Bara
Simona Vasilica Oprea
A three-stage approach for resilience-constrained scheduling of networked microgrids
Journal of Modern Power Systems and Clean Energy
Networked microgrid (NMG)
Distributed energy resource (DER)
Power system resilience
Point estimate method
author_facet Saeed Teimourzadeh
Osman Bulent Tor
Mahmut Erkut Cebeci
Adela Bara
Simona Vasilica Oprea
author_sort Saeed Teimourzadeh
title A three-stage approach for resilience-constrained scheduling of networked microgrids
title_short A three-stage approach for resilience-constrained scheduling of networked microgrids
title_full A three-stage approach for resilience-constrained scheduling of networked microgrids
title_fullStr A three-stage approach for resilience-constrained scheduling of networked microgrids
title_full_unstemmed A three-stage approach for resilience-constrained scheduling of networked microgrids
title_sort three-stage approach for resilience-constrained scheduling of networked microgrids
publisher IEEE
series Journal of Modern Power Systems and Clean Energy
issn 2196-5420
publishDate 2019-01-01
description This paper deals with optimal scheduling of networked microgrids (NMGs) considering resilience constraints. The proposed scheme attempts to mitigate the damaging impacts of electricity interruptions by effectively exploiting NMG capabilities. A three-stage framework is proposed. In Stage 1, the optimal scheduling of NMGs is studied through determining the power transaction between the NMGs and upstream network, the output power of distributed energy resources (DERs), commitment status of conventional DERs as well as demand-side reserves. In Stage 2, the decisions made at Stage 1 are realized considering uncertainties pertaining to renewable generation, market price, power consumption of loads, and unintentional islanding of NMGs from the upstream network and resynchronization. Stage 3 deals with uncertainties of unintentional islanding of each MG from the rest of islanded NMGs and resynchronization. The problem is formulated as a mixed-integer linear programming problem and its effectiveness is assured by simulation studies.
topic Networked microgrid (NMG)
Distributed energy resource (DER)
Power system resilience
Point estimate method
url https://ieeexplore.ieee.org/document/9028826/
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