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Design, protect, and secure microgrids for resilient energy distribution
This book covers AC, DC, and hybrid microgrid control schemes with particular focus on solar, wind, battery, and fuel cell systems. With an examination on classification, structure, and operational modes of microgrids, this book presents modeling of random variables for wind and solar microgrid planning, supported by real-world case studies and practical applications throughout.
The book also includes:
Designed for engineers, policy makers, and researchers working in electrical engineering, renewable energy, and energy systems, this reference delivers the technical depth needed to implement and manage microgrids. Graduate and undergraduate students in electrical engineering will find it a rigorous resource for understanding microgrid design, control, and security.
Design, protect, and secure microgrids for resilient energy distribution
This book covers AC, DC, and hybrid microgrid control schemes with particular focus on solar, wind, battery, and fuel cell systems. With an examination on classification, structure, and operational modes of microgrids, this book presents modeling of random variables for wind and solar microgrid planning, supported by real-world case studies and practical applications throughout.
The book also includes:
Designed for engineers, policy makers, and researchers working in electrical engineering, renewable energy, and energy systems, this reference delivers the technical depth needed to implement and manage microgrids. Graduate and undergraduate students in electrical engineering will find it a rigorous resource for understanding microgrid design, control, and security.
Atsiliepimai