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8 matches in All Departments
This book presents readers with an integrated modeling approach for
analyzing and understanding the interconnection of water, energy,
and food resources and discusses the relationship between
resilience and sustainability of the food- energy -water (FEW)
system. Authors provide novel frameworks, models, and algorithms
designed to balance the theoretical and applicative aspects of each
chapter. The book covers an integrated modeling approach for FEW
systems along with developed methods, codes, and planning tools for
designing interdependent energy, water and food systems. In-depth
chapters discuss the impact of renewable energy resources in FEW
systems, sustainable design and operation, net zero energy
buildings, and challenges and opportunities of the FEW nexus in the
sustainable development of different countries. This book is useful
for graduate students, researchers, and engineers seeking to
understand how sustainable FEW systems contribute to the resilience
of these systems and help policy and design makers allocate and
prioritize resources in an integrated manner across the food,
energy, and water sectors.
This book evaluates the role of innovative machine learning and
deep learning methods in dealing with power system issues,
concentrating on recent developments and advances that improve
planning, operation, and control of power systems. Cutting-edge
case studies from around the world consider prediction,
classification, clustering, and fault/event detection in power
systems, providing effective and promising solutions for many novel
challenges faced by power system operators. Written by leading
experts, the book will be an ideal resource for researchers and
engineers working in the electrical power engineering and power
system planning communities, as well as students in advanced
graduate-level courses.
This book discusses the optimal design and operation of
multi-carrier energy systems, providing a comprehensive review of
existing systems as well as proposing new models. Chapters cover
the theoretical background and application examples of
interconnecting energy technologies such as combined heat and power
plants, natural gas-fired power plants, power to gas technology,
hydropower plants, and water desalination systems, taking into
account the operational and technical constraints of each
interconnecting element and the network constraint of each energy
system. This book will be a valuable reference for power network
and mechanical system professionals and engineers, electrical power
engineering researchers and developers, and professionals from
affiliated power system planning communities. Provides insight on
the design and operation of multi-carrier energy systems; Covers
both theoretical aspects and technical applications; Includes case
studies to help apply concepts to real engineering situations.
Automation and Robotics in the Architecture, Engineering, and
Construction Industry provides distinct and unified insight into
current and future construction robotics, offering readers a
comprehensive perspective for constructing a road map and
illuminating improvements for a successful transition towards
construction robotization. The book covers the fundamentals and
applications of robotics, autonomous vehicles, and human-perceptive
machines at construction sites. Through theoretical and
experimental analyses, it examines the potential of robotics and
automated systems for current and future fieldwork operations and
identifies the factors that determine their implementation pace,
adoption scale, and ubiquity throughout the industry. The book
evaluates the technical, societal, and economic aspects of adopting
robots in construction, both as standalone and collaborative
systems, which in return can afford the opportunity to investigate
these AI-enabled machines more systematically.
Automation and Robotics in the Architecture, Engineering, and
Construction Industry provides distinct and unified insight into
current and future construction robotics, offering readers a
comprehensive perspective for constructing a road map and
illuminating improvements for a successful transition towards
construction robotization. The book covers the fundamentals and
applications of robotics, autonomous vehicles, and human-perceptive
machines at construction sites. Through theoretical and
experimental analyses, it examines the potential of robotics and
automated systems for current and future fieldwork operations and
identifies the factors that determine their implementation pace,
adoption scale, and ubiquity throughout the industry. The book
evaluates the technical, societal, and economic aspects of adopting
robots in construction, both as standalone and collaborative
systems, which in return can afford the opportunity to investigate
these AI-enabled machines more systematically.
This book evaluates the role of innovative machine learning and
deep learning methods in dealing with power system issues,
concentrating on recent developments and advances that improve
planning, operation, and control of power systems. Cutting-edge
case studies from around the world consider prediction,
classification, clustering, and fault/event detection in power
systems, providing effective and promising solutions for many novel
challenges faced by power system operators. Written by leading
experts, the book will be an ideal resource for researchers and
engineers working in the electrical power engineering and power
system planning communities, as well as students in advanced
graduate-level courses.
This book discusses the optimal design and operation of
multi-carrier energy systems, providing a comprehensive review of
existing systems as well as proposing new models. Chapters cover
the theoretical background and application examples of
interconnecting energy technologies such as combined heat and power
plants, natural gas-fired power plants, power to gas technology,
hydropower plants, and water desalination systems, taking into
account the operational and technical constraints of each
interconnecting element and the network constraint of each energy
system. This book will be a valuable reference for power network
and mechanical system professionals and engineers, electrical power
engineering researchers and developers, and professionals from
affiliated power system planning communities. Provides insight on
the design and operation of multi-carrier energy systems; Covers
both theoretical aspects and technical applications; Includes case
studies to help apply concepts to real engineering situations.
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