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A resilience-oriented centralised-to-decentralised framework for networked microgrids management

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Title: A resilience-oriented centralised-to-decentralised framework for networked microgrids management
Authors: Ge, P
Teng, F
Konstantinou, C
Hu, S
Item Type: Journal Article
Abstract: This paper proposes a cyber–physical cooperative mitigation framework to enhance power systems resilience against power outages caused by extreme events, e.g., earthquakes and hurricanes. Extreme events can simultaneously damage the physical-layer electric power infrastructure and the cyber-layer communication facilities. Microgrid (MG) has been widely recognised as an effective physical-layer response to such events, however, the mitigation strategy in the cyber lay is yet to be fully investigated. Therefore, this paper proposes a resilience-oriented centralised-to-decentralised framework to maintain the power supply of critical loads such as hospitals, data centres, etc., under extreme events. For the resilient control, controller-to-controller (C2C) wireless network is utilised to form the emergency regional communication when centralised base station being compromised. Owing to the limited reliable bandwidth that reserved as a backup, the inevitable delays are dynamically minimised and used to guide the design of a discrete-time distributed control algorithm to maintain post-event power supply. The effectiveness of the cooperative cyber–physical mitigation framework is demonstrated through extensive simulations in MATLAB/Simulink.
Issue Date: 15-Feb-2022
Date of Acceptance: 19-Nov-2021
URI: http://hdl.handle.net/10044/1/99156
DOI: 10.1016/j.apenergy.2021.118234
ISSN: 0306-2619
Publisher: Elsevier
Journal / Book Title: Applied Energy
Volume: 308
Copyright Statement: © 2021 Elsevier Ltd. All rights reserved. . This manuscript is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International Licence http://creativecommons.org/licenses/by-nc-nd/4.0/
Keywords: Science & Technology
Technology
Energy & Fuels
Engineering, Chemical
Engineering
Centralised-to-decentralised framework
Resilience
Microgrid
Wireless communication
Contingency response
RESOURCE-ALLOCATION
MULTIAGENT SYSTEMS
SECONDARY VOLTAGE
CLIMATE-CHANGE
CONSENSUS
TIME
AC
Science & Technology
Technology
Energy & Fuels
Engineering, Chemical
Engineering
Centralised-to-decentralised framework
Resilience
Microgrid
Wireless communication
Contingency response
RESOURCE-ALLOCATION
MULTIAGENT SYSTEMS
SECONDARY VOLTAGE
CLIMATE-CHANGE
CONSENSUS
TIME
AC
eess.SY
eess.SY
cs.SY
09 Engineering
14 Economics
Energy
Publication Status: Published
Article Number: ARTN 118234
Online Publication Date: 2022-01-06
Appears in Collections:Electrical and Electronic Engineering



This item is licensed under a Creative Commons License Creative Commons