
Smart Cyber-Physical Power Systems, Volume 1
Fundamental Concepts, Challenges, and Solutions
- 803 pages
- English
- PDF
- Available on iOS & Android
Smart Cyber-Physical Power Systems, Volume 1
Fundamental Concepts, Challenges, and Solutions
About this book
Authoritative, highly comprehensive guide on how emerging technologies can address various challenges in different sectors of smart cyber-physical power systems
As the world shifts towards smarter and more resilient energy systems, cyber-physical power systems (CPSs) represent a critical step in modernizing the power infrastructure. Smart Cyber-Physical Power Systems, Volume 1: Fundamental Concepts, Challenges, and Solutions, offers an in-depth exploration of the fundamental concepts, structures, and major challenges that underlie these complex systems. It covers the essential theories and frameworks that drive the integration of digital technologies with physical power systems, including smart grids, microgrids, and the Internet of Energy.
This volume addresses a range of crucial topics, from global demand response strategies and microgrid architectures to smart energy management in cities and advanced distributed control strategies. Additionally, it highlights key challenges such as ensuring resiliency, protecting against cyberattacks, and maintaining reliability in the face of rapid technological advancements.
Experts from around the world contribute to this volume, sharing vital insights into the transformation of traditional power systems into adaptive, cyber-physical networks. Their focus on the growing importance of privacy, security, and data analytics makes this book a critical resource for anyone involved in power system research, offering essential tools to navigate and shape the future landscapes of energy systems.
Whether you're a researcher, engineer, or industry professional, this volume provides the foundational knowledge needed to understand the evolving landscape of smart cyber-physical power systems and the significant challenges they face.
Join us on a journey through the landscape of Smart Cyber-Physical Power Systems (CPPSs), where cutting-edge solutions meet the challenges of today and forge the energy paradigms of tomorrow, driven by AI/ML, Big Data, Blockchain, IoT, Quantum Computing, Information Theory, Edge Computing, Metaverse, DevOps, and more.
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Information
Table of contents
- Cover
- Title Page
- Copyright
- Contents
- About the Editors
- List of Contributors
- Foreword (John D. McDonald)
- Foreword (Massoud Amin)
- Preface for Volume 1: Smart Cyber‐Physical Power Systems: Fundamental Concepts, Challenges, and Solutions
- Acknowledgments
- Chapter 1 Overview of Smart Cyber‐Physical Power Systems: Fundamentals, Challenges, and Solutions
- Chapter 2 Global Demand Response Status: Potentials, Barriers, and Solutions
- Chapter 3 Smart Power/Energy Management and Optimization in Microgrids
- Chapter 4 Smart City Energy Infrastructure as a Cyber‐Physical System of Systems: Planning, Operation, and Control Processes
- Chapter 5 Metaverse Local Energy Market in Smart City: A Descriptive Model and Strategic Development Analysis
- Chapter 6 Cooperative and Distributed Control Strategies of Microgrids
- Chapter 7 Interconnected Microgrid Systems: Architecture, Hierarchical Control, and Implementation
- Chapter 8 Internet of Energy, and Internet of Microgrids (IoE, IoM)*
- Chapter 9 Voltage Regulation and Reactive Power Optimization for Integration of Distributed Energy Resources into Smart Grids
- Chapter 10 The Role of Data Analysis in Hosting Capacities of Distribution Power Systems for Electric Vehicles
- Chapter 11 Energy Efficiency in Smart Buildings Through IoT Sensor Integration
- Chapter 12 Optimal Dispatch of Smart Energy System Based on Cyber–Physical–Social Integration
- Chapter 13 Power Distribution Systems Self‐Healing
- Chapter 14 Resiliency, Reliability, and Security of Cyber‐Physical Power System
- Chapter 15 Cyberattacks on Power Systems
- Chapter 16 Vulnerabilities of Machine Learning Algorithms to Adversarial Attacks for Cyber‐Physical Power Systems
- Chapter 17 Synchrophasor Data Anomaly Detection for Wide‐Area Monitoring and Control in Cyber‐Power Systems
- Chapter 18 Application of State Observers and Filters in Protection and Cyber‐Security of Power Grids
- Chapter 19 Anomaly Detection and Mitigation in Cyber‐Physical Power Systems Based on Hybrid Deep Learning and Attack Graphs
- Chapter 20 Attack Detection and Countermeasures at Edge Devices
- Chapter 21 Privacy‐Preserving Outage Detection in Modern Distribution Grids: Challenges and Opportunities
- Chapter 22 Transactive Energy Management and Distribution System Reform Using Market Concepts
- Chapter 23 Transactive Energy Systems in Decentralized Autonomous Renewable Energy Communities
- Chapter 24 Transactive Coordination Paradigm for Efficient Charging Management of Plug‐in Electric Vehicles in Future Distribu ion Networks
- Chapter 25 Optimal Peer‐to‐Peer Energy Trading Using Machine Learning: Architecture, Strategies, and Algorithms
- Chapter 26 Optimal Peer‐to‐Peer Power Sharing in DC Islanded Microgrids
- Chapter 27 Blockchain‐Based Energy Trading Employing Hyperledger and Anomaly Detection Algorithms
- Chapter 28 Optimal Coordination of VSC‐Interfaced Subsystems to Safeguard the Frequency Performance of Cyber‐Physical Power Systems
- Index
- EULA