Power system resilience and strategies for a sustainable infrastructure: A review

The increasing occurrence of severe vulnerabilities, such as natural catastrophes and man-made attacks, has resulted in a corresponding rise in power outages on a global scale. Given the growing recognition of such exceptional occurrences, there is a pressing need to examine the matters pertaining t...

Full description

Saved in:
Bibliographic Details
Main Authors: Mohanty A., Ramasamy A.K., Verayiah R., Bastia S., Dash S.S., Cuce E., Khan T.M.Y., Soudagar M.E.M.
Other Authors: 55521129800
Format: Review
Published: Elsevier B.V. 2025
Subjects:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1833350513895145472
author Mohanty A.
Ramasamy A.K.
Verayiah R.
Bastia S.
Dash S.S.
Cuce E.
Khan T.M.Y.
Soudagar M.E.M.
author2 55521129800
author_facet 55521129800
Mohanty A.
Ramasamy A.K.
Verayiah R.
Bastia S.
Dash S.S.
Cuce E.
Khan T.M.Y.
Soudagar M.E.M.
author_sort Mohanty A.
building UNITEN Library
collection Institutional Repository
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
continent Asia
country Malaysia
description The increasing occurrence of severe vulnerabilities, such as natural catastrophes and man-made attacks, has resulted in a corresponding rise in power outages on a global scale. Given the growing recognition of such exceptional occurrences, there is a pressing need to examine the matters pertaining to resilience and the mitigation of risks. This study presents a comprehensive overview of the current state-of-the-art in power system resiliency, as well as an exploration of the measures required to ensure a sustainable environment.These instances of measures include resilience by enabling localized generation and distribution of electricity,diversification of energy resources, withstanding of severe weather conditions, cyberattacks and enabling communities to proactively address the consequences of power outages. There are multiple approaches to bolstering resiliency, which aim to facilitate recovery from unforeseen circumstances and promote stability in the face of uncertain events. These measures also serve to mitigate the impact of unexpected incidents such as power outages. Integrating unpredictable renewable energy sources like solar and wind power into energy networks is difficult, especially in terms of resilience. Renewable energy output fluctuates owing to weather and time of day, requiring sophisticated grid management, energy storage, and demand-response mechanisms to maintain system balance and resilience. This study elucidates the enhanced principles of power system dependability and resilience, in addition to several ways for establishing a sustainable power ecosystem. It examines the complex dynamics of risk assessment, including equipment failures, natural disasters, and human errors, to determine their likelihood and implications. Moreover, the study thoroughly examines the critical moments that occur after accidents, emphasizing the need of prompt reaction and recovery measures in reducing downtime and restoring regular operations to impacted power networks. This involves determining the fundamental reasons behind the incidents, such as whether they arise from equipment malfunctions, human mistakes, external influences like natural calamities, or cyber assaults. In addition, the report examines the efficacy of current response protocols and emergency procedures in reducing the impact of accidents and restoring regular operations to impacted electrical systems. ? 2024 The Authors
format Review
id my.uniten.dspace-36352
institution Universiti Tenaga Nasional
publishDate 2025
publisher Elsevier B.V.
record_format dspace
spelling my.uniten.dspace-363522025-03-03T15:42:03Z Power system resilience and strategies for a sustainable infrastructure: A review Mohanty A. Ramasamy A.K. Verayiah R. Bastia S. Dash S.S. Cuce E. Khan T.M.Y. Soudagar M.E.M. 55521129800 16023154400 26431682500 57216693816 59274446600 47560946200 55189263800 57194384501 Accidents Computer system recovery Disasters Electric energy storage Outages Recovery Risk assessment Uncertainty analysis Wind power Energy Global scale Power Power outage Regular operations Resiliency Strategy Sustainable infrastructure System resiliences System strategies Sustainable development The increasing occurrence of severe vulnerabilities, such as natural catastrophes and man-made attacks, has resulted in a corresponding rise in power outages on a global scale. Given the growing recognition of such exceptional occurrences, there is a pressing need to examine the matters pertaining to resilience and the mitigation of risks. This study presents a comprehensive overview of the current state-of-the-art in power system resiliency, as well as an exploration of the measures required to ensure a sustainable environment.These instances of measures include resilience by enabling localized generation and distribution of electricity,diversification of energy resources, withstanding of severe weather conditions, cyberattacks and enabling communities to proactively address the consequences of power outages. There are multiple approaches to bolstering resiliency, which aim to facilitate recovery from unforeseen circumstances and promote stability in the face of uncertain events. These measures also serve to mitigate the impact of unexpected incidents such as power outages. Integrating unpredictable renewable energy sources like solar and wind power into energy networks is difficult, especially in terms of resilience. Renewable energy output fluctuates owing to weather and time of day, requiring sophisticated grid management, energy storage, and demand-response mechanisms to maintain system balance and resilience. This study elucidates the enhanced principles of power system dependability and resilience, in addition to several ways for establishing a sustainable power ecosystem. It examines the complex dynamics of risk assessment, including equipment failures, natural disasters, and human errors, to determine their likelihood and implications. Moreover, the study thoroughly examines the critical moments that occur after accidents, emphasizing the need of prompt reaction and recovery measures in reducing downtime and restoring regular operations to impacted power networks. This involves determining the fundamental reasons behind the incidents, such as whether they arise from equipment malfunctions, human mistakes, external influences like natural calamities, or cyber assaults. In addition, the report examines the efficacy of current response protocols and emergency procedures in reducing the impact of accidents and restoring regular operations to impacted electrical systems. ? 2024 The Authors Final 2025-03-03T07:42:03Z 2025-03-03T07:42:03Z 2024 Review 10.1016/j.aej.2024.06.092 2-s2.0-85197483234 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85197483234&doi=10.1016%2fj.aej.2024.06.092&partnerID=40&md5=33f837f91efd0bfa0e26acf0279db443 https://irepository.uniten.edu.my/handle/123456789/36352 105 261 279 Elsevier B.V. Scopus
spellingShingle Accidents
Computer system recovery
Disasters
Electric energy storage
Outages
Recovery
Risk assessment
Uncertainty analysis
Wind power
Energy
Global scale
Power
Power outage
Regular operations
Resiliency
Strategy
Sustainable infrastructure
System resiliences
System strategies
Sustainable development
Mohanty A.
Ramasamy A.K.
Verayiah R.
Bastia S.
Dash S.S.
Cuce E.
Khan T.M.Y.
Soudagar M.E.M.
Power system resilience and strategies for a sustainable infrastructure: A review
title Power system resilience and strategies for a sustainable infrastructure: A review
title_full Power system resilience and strategies for a sustainable infrastructure: A review
title_fullStr Power system resilience and strategies for a sustainable infrastructure: A review
title_full_unstemmed Power system resilience and strategies for a sustainable infrastructure: A review
title_short Power system resilience and strategies for a sustainable infrastructure: A review
title_sort power system resilience and strategies for a sustainable infrastructure: a review
topic Accidents
Computer system recovery
Disasters
Electric energy storage
Outages
Recovery
Risk assessment
Uncertainty analysis
Wind power
Energy
Global scale
Power
Power outage
Regular operations
Resiliency
Strategy
Sustainable infrastructure
System resiliences
System strategies
Sustainable development
url_provider http://dspace.uniten.edu.my/