Distributed Control Methods and Impact of Communication Failure in AC Microgrids: A Comparative Review

The objectives of this paper are to review and compare the distributed control methods in AC microgrids and also to identify the impact of communication failure on this type of the controller. The current AC microgrids are distinguished from the traditional power system topologies because of the hig...

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Main Authors: Fateme Aghaee, Nima Mahdian Dehkordi, Navid Bayati, Amin Hajizadeh
Format: Article
Language:English
Published: MDPI AG 2019-11-01
Series:Electronics
Subjects:
Online Access:https://www.mdpi.com/2079-9292/8/11/1265
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spelling doaj-404bd67c8ca44cd790771ad6b41243372020-11-25T01:43:55ZengMDPI AGElectronics2079-92922019-11-01811126510.3390/electronics8111265electronics8111265Distributed Control Methods and Impact of Communication Failure in AC Microgrids: A Comparative ReviewFateme Aghaee0Nima Mahdian Dehkordi1Navid Bayati2Amin Hajizadeh3Department of Electrical Engineering, Shahid Rajaee Teacher Training University, Lavizan, Tehran 16785–136, IranDepartment of Electrical Engineering, Shahid Rajaee Teacher Training University, Lavizan, Tehran 16785–136, IranDepartment of Energy Technology, Aalborg University, 6700 Esbjerg, DenmarkDepartment of Energy Technology, Aalborg University, 6700 Esbjerg, DenmarkThe objectives of this paper are to review and compare the distributed control methods in AC microgrids and also to identify the impact of communication failure on this type of the controller. The current AC microgrids are distinguished from the traditional power system topologies because of the high penetration of advanced control methods, measurements, sensors, power electronic devices, and communication links. Also, because of the increasing integration of renewable energy sources, control strategy for congestion management, frequency control, and optimal dispatch of microgrids has become more complicated. This paper explains the characteristics and features of distributed control systems and discusses the challenges of these approaches. In addition, a comprehensive review of the advantages and disadvantages of these techniques are explained in detail. On the other hand, the possible challenges, related to communication failure, noise, delay, and packet dropout on the operation of the distributed controller are presented, and several techniques, which reduce the impact of communication failure of the distributed controller, are compared. This comprehensive study on distributed control systems reveals the challenges in and future possible studies on this issue.https://www.mdpi.com/2079-9292/8/11/1265microgriddistributed controlrenewable energysecondary controlcommunication link
collection DOAJ
language English
format Article
sources DOAJ
author Fateme Aghaee
Nima Mahdian Dehkordi
Navid Bayati
Amin Hajizadeh
spellingShingle Fateme Aghaee
Nima Mahdian Dehkordi
Navid Bayati
Amin Hajizadeh
Distributed Control Methods and Impact of Communication Failure in AC Microgrids: A Comparative Review
Electronics
microgrid
distributed control
renewable energy
secondary control
communication link
author_facet Fateme Aghaee
Nima Mahdian Dehkordi
Navid Bayati
Amin Hajizadeh
author_sort Fateme Aghaee
title Distributed Control Methods and Impact of Communication Failure in AC Microgrids: A Comparative Review
title_short Distributed Control Methods and Impact of Communication Failure in AC Microgrids: A Comparative Review
title_full Distributed Control Methods and Impact of Communication Failure in AC Microgrids: A Comparative Review
title_fullStr Distributed Control Methods and Impact of Communication Failure in AC Microgrids: A Comparative Review
title_full_unstemmed Distributed Control Methods and Impact of Communication Failure in AC Microgrids: A Comparative Review
title_sort distributed control methods and impact of communication failure in ac microgrids: a comparative review
publisher MDPI AG
series Electronics
issn 2079-9292
publishDate 2019-11-01
description The objectives of this paper are to review and compare the distributed control methods in AC microgrids and also to identify the impact of communication failure on this type of the controller. The current AC microgrids are distinguished from the traditional power system topologies because of the high penetration of advanced control methods, measurements, sensors, power electronic devices, and communication links. Also, because of the increasing integration of renewable energy sources, control strategy for congestion management, frequency control, and optimal dispatch of microgrids has become more complicated. This paper explains the characteristics and features of distributed control systems and discusses the challenges of these approaches. In addition, a comprehensive review of the advantages and disadvantages of these techniques are explained in detail. On the other hand, the possible challenges, related to communication failure, noise, delay, and packet dropout on the operation of the distributed controller are presented, and several techniques, which reduce the impact of communication failure of the distributed controller, are compared. This comprehensive study on distributed control systems reveals the challenges in and future possible studies on this issue.
topic microgrid
distributed control
renewable energy
secondary control
communication link
url https://www.mdpi.com/2079-9292/8/11/1265
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AT navidbayati distributedcontrolmethodsandimpactofcommunicationfailureinacmicrogridsacomparativereview
AT aminhajizadeh distributedcontrolmethodsandimpactofcommunicationfailureinacmicrogridsacomparativereview
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