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Residential Microgrids and Rural Electrifications contains an
overview of microgrids' architecture, load assessments, designing
of microgrids for residential systems, and rural electrifications
to help readers understand the fundamentals. Including many new
topics in the field of home automation and the application of IoT
for microgrids monitoring and control, the book includes sections
on the infrastructure necessary for charging Electric Vehicles in
residential systems and rural electrifications and how to estimate
the energy and cost of various combinations of energy resources.
Many examples and practical case studies are included to enhance
and reinforce learning objective goals. Those in engineering
research and technical professions will be able to perform energy
and cost analyses of various combinations of energy sources by
using advanced, real simulation tools.
Power Quality in Modern Power Systems presents an overview of power
quality problems in electrical power systems, for identifying
pitfalls and applying the fundamental concepts for tackling and
maintaining the electrical power quality standards in power
systems. It covers the recent trends and emerging topics of power
quality in large scale renewable energy integration, electric
vehicle charging stations, voltage control in active distribution
network and solutions to integrate large scale renewable energy
into the electric grid with several case studies and real-time
examples for power quality assessments and mitigations measures.
This book will be a practical guide for graduate and post graduate
students of electrical engineering, engineering professionals,
researchers and consultants working in the area of power quality.
This edited book comprises chapters that describe the IoT, machine
learning, and blockchain technologies for renewable energy and
modern hybrid power systems with simulation examples and case
studies. After reading this book, users will understand recent
technologies such as IoT, machine learning techniques, and
blockchain technologies and the application of these technologies
to renewable energy resources and modern hybrid power systems
through simulation examples and case studies.
Electrical and instrumentation engineering is changing rapidly, and
it is important for the veteran engineer in the field not only to
have a valuable and reliable reference work which he or she can
consult for basic concepts, but also to be up to date on any
changes to basic equipment or processes that might have occurred in
the field. Covering all of the basic concepts, from three-phase
power supply and its various types of connection and conversion, to
power equation and discussions of the protection of power system,
to transformers, voltage regulation, and many other concepts, this
volume is the one-stop, "go to" for all of the engineer's questions
on basic electrical and instrumentation engineering. There are
chapters covering the construction and working principle of the DC
machine, all varieties of motors, fundamental concepts and
operating principles of measuring, and instrumentation, both from a
"high end" point of view and the point of view of developing
countries, emphasizing low-cost methods. A valuable reference for
engineers, scientists, chemists, and students, this volume is
applicable to many different fields, across many different
industries, at all levels. It is a must-have for any library.
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