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Présentation Smart Cyber - Physical Power Systems, Volume 1 Format Relié
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Résumé : About the Editors xxv List of Contributors xxix Foreword (John D. McDonald) xxxvii Foreword (Massoud Amin) xxxix Preface for Volume 1: Smart Cyber-Physical Power Systems: Fundamental Concepts, Challenges, and Solutions xliii Acknowledgments xlv 1 Overview of Smart Cyber-Physical Power Systems: Fundamentals, Challenges, and Solutions 1 1.1 Introduction 1 1.2 Structural Overview and Roadmap of the Book 1 1.3 General Concepts of the Cyber-Physical Systems 7 1.4 Cyber-Physical Energy and Power Systems (CPEPSS) 16 1.5 From Conventional Distribution Networks to Smart Grids 21 1.6 Smart Grid Ecosystem (From Smart Buildings to Smart Grid) 42 1.7 Cybersecurity in Modern Power Systems 54 1.8 Conclusions 63 References 64 2 Global Demand Response Status: Potentials, Barriers, and Solutions 71 2.1 Background 71 2.2 Global Status of DR Programs 72 2.3 AI and ML Applications in DR 75 2.4 Case Study 77 2.5 Discussion 81 References 81 3 Smart Power/Energy Management and Optimization in Microgrids 85 3.1 Introduction 85 3.2 Materials and Methods 86 3.3 Simulation and Results 91 3.4 Discussion 94 3.5 Conclusions 95 References 96 4 Smart City Energy Infrastructure as a Cyber-Physical System of Systems: Planning, Operation, and Control Processes 99 4.1 Introduction 99 4.2 Cyber-Physical System of Systems 100 4.3 Cyber-Physical System of System Application Domains 103 4.4 Smart City Cyber-Physical System of Systems 106 4.5 Smart City Energy Cyber-Physical System of Systems 109 4.6 Planning, Operation, and Control Process in Smart City Energy Cyber-Physical System of Systems 112 4.7 Emergence in Smart City Energy Cyber-Physical System of Systems 115 4.8 Conclusions 116 References 117 5 Metaverse Local Energy Market in Smart City: A Descriptive Model and Strategic Development Analysis 125 5.1 Introduction 125 5.2 Background 126 5.3 Concepts 127 5.4 Case Study: Local Energy Market in Metaverse 129 5.5 Discussions and Conclusions 132 References 133 6 Cooperative and Distributed Control Strategies of Microgrids 135 6.1 Introduction 135 6.2 Fault-Tolerant Secondary Control Schemes in Islanded AC Microgrids 137 6.3 Finite-Time Fault-Tolerant Voltage Control 140 6.4 Case Studies 143 6.5 Concluding Remarks 148 References 149 7 Interconnected Microgrid Systems: Architecture, Hierarchical Control, and Implementation 151 7.1 Introduction 151 7.2 Architecture 152 7.3 Hierarchical Control of Interconnected MGs 153 7.4 The Multi-Agent System 157 7.5 The Implementation on a Real-Time Cyber-Physical Testbed 158 7.6 Conclusions 164 References 165 8 Internet of Energy, and Internet of Microgrids (IoE, IoM) 167 8.1 Introduction 167 8.2 Interfacing of the IoT Node fo...
Ali Parizad, Hamid Reza Baghaee, and Saifur Rahman
Sanchari Deb, Elahe Doroudchi, Sergio Motta, Matti Aro, and Amir Safdarian
Talal Saleh, Omar Mohamed, Seyed Farhad Zandrazavi, and Miadreza Shafie-khah
Mahdi Nozarian, Alireza Fereidunian, and Masoud Barati
Mohammad Ghafourian Nasiri, Zahra Iranpour Mobarakeh, Mahdi Nozarian, Alireza Fereidunian, Sabrieh Choobkar, and Hossein Jobran
Mahmood Jamali and Mahdieh S. Sadabadi
Tung Lam Nguyen, Yu Wang, Ha Thi Nguyen, and Tran The Hoang
Jonatas Boas Leite and Mladen Kezunovic
Sommaire: Ali Parizad, PhD, is a Postdoctoral Associate at the Advanced Research Institute (ARI) of Virginia Polytechnic Institute and State University, VA, USA. Leveraging his extensive academic background, he served as a Senior Data Scientist in the IDA Data Science & Machine Learning (DSML) Department at Shell Energy. He holds the position of Staff Power Systems Machine Learning Engineer at Thinklabs AI, where he tackles critical challenges in power systems with cutting-edge AI applications. Hamid Reza Baghaee, PhD, is an Associate Research Professor at Amirkabir University of Technology, Tehran, Iran. Saifur Rahman, PhD, is the founding director of the Advanced Research Institute at Virginia Tech, where he is the Joseph R. Loring Professor of Electrical and Computer Engineering....
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