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This book provides a comprehensive overview on the latest
developments in the control, operation, and protection of
microgrids. It provides readers with a solid approach to analyzing
and understanding the salient features of modern control and
operation management techniques applied to these systems, and
presents practical methods with examples and case studies from
actual and modeled microgrids. The book also discusses emerging
concepts, key drivers and new players in microgrids, and local
energy markets while addressing various aspects from day-ahead
scheduling to real-time testing of microgrids. The book will be a
valuable resource for researchers who are focused on control
concepts, AC, DC, and AC/DC microgrids, as well as those working in
the related areas of energy engineering, operations research and
its applications to energy systems. Presents modern operation,
control and protection techniques with applications to real world
and emulated microgrids; Discusses emerging concepts, key drivers
and new players in microgrids and local energy markets; Addresses
various aspects from day-ahead scheduling to real-time testing of
microgrids.
This book provides a comprehensive overview on the latest
developments in the control, operation, and protection of
microgrids. It provides readers with a solid approach to analyzing
and understanding the salient features of modern control and
operation management techniques applied to these systems, and
presents practical methods with examples and case studies from
actual and modeled microgrids. The book also discusses emerging
concepts, key drivers and new players in microgrids, and local
energy markets while addressing various aspects from day-ahead
scheduling to real-time testing of microgrids. The book will be a
valuable resource for researchers who are focused on control
concepts, AC, DC, and AC/DC microgrids, as well as those working in
the related areas of energy engineering, operations research and
its applications to energy systems. Presents modern operation,
control and protection techniques with applications to real world
and emulated microgrids; Discusses emerging concepts, key drivers
and new players in microgrids and local energy markets; Addresses
various aspects from day-ahead scheduling to real-time testing of
microgrids.
IoT-Enabled Multi-Energy Systems: From Isolated Energy Grids to
Modern Interconnected Networks proposes practical solutions for the
management and control of energy interactions throughout the
interconnected energy infrastructures of the future multi-energy
grid. The book discusses a panorama of modeling, planning and
optimization considerations for IoT technologies, their
applications across grid modernization, and the coordinated
operation of multi-vector energy grids. The work is suitable for
energy, power, mechanical, chemical, process and environmental
engineers, and highly relevant for researchers and postgraduate
students who work on energy systems. Sections address core
theoretical underpinnings, significant challenges and
opportunities, how to support IoT-based developed expert systems,
and how AI can empower IoT technologies to sustainably develop
fully renewable modern multi-carrier energy networks. Contributors
address artificial intelligence technology and its applications in
developing IoT-based technologies, cloud-based intelligent energy
management schemes, data science and multi-energy big data
analysis, machine learning and deep learning techniques in
multi-energy systems, and much more.
Energy Storage in Energy Markets reviews the modeling, design,
analysis, optimization and impact of energy storage systems in
energy markets in a way that is ideal for an audience of
researchers and practitioners. The book provides deep insights on
potential benefits and revenues, economic evaluation, investment
challenges, risk analysis, technical requirements, and the impacts
of energy storage integration. Heavily referenced and easily
accessible to policymakers, developers, engineer, researchers and
students alike, this comprehensive resource aims to fill the gap in
the role of energy storage in pool/local energy/ancillary service
markets and other multi-market commerce. Chapters elaborate on
energy market fundamentals, operations, energy storage
fundamentals, components, and the role and impact of storage
systems on energy systems from different aspects, such as
environmental, technical and economics, the role of storage devices
in uncertainty handling in energy systems and their contributions
in resiliency and reliability improvement.
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