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Power Electronics Converters and their Control for Renewable Energy
Applications provides information that helps to solve common
challenges with power electronics converters, including loss by
switching, heating of power switches, management of switching time,
improvement of the quality of the signals delivered by power
converters, and improvement of the quality of energy produced by
renewable energy sources. This book will be of interest to
academics, researchers and engineers in renewable energy, power
systems, electrical engineering, electronics and mechanical
engineering.
The energy transition initiated in recent years has enabled the
growing integration of renewable production into the energy mix.
Microgrids make it possible to maximize the efficiency of energy
transmission from source to consumer by bringing the latter
together geographically and by reducing losses linked to transport.
However, the lack of inertia and the micro-grid support system
makes it weak, and energy storage is necessary to ensure its proper
functioning. Current storage technologies do not make it possible
to provide both a large capacity of energy and power at the same
time. Hybrid storage is a solution that combines the advantages of
several technologies and reduces their disadvantages. Modeling and
Control of Static Converters for Hybrid Storage Systems covers the
modeling, control theorems, and optimization techniques that solve
many scientific problems for researchers in the field of power
converter control for renewable energy hybrid storage and places
particular emphasis on the modeling and control of static
converters for hybrid storage systems. Covering topics ranging from
energy storage to power generation, this book is ideal for
automation engineers, electrical engineers, mechanical engineers,
professionals, scientists, academicians, master's and doctoral
students, and researchers in the disciplines of electrical and
mechanical engineering.
The energy transition initiated in recent years has enabled the
growing integration of renewable production into the energy mix.
Microgrids make it possible to maximize the efficiency of energy
transmission from source to consumer by bringing the latter
together geographically and by reducing losses linked to transport.
However, the lack of inertia and the micro-grid support system
makes it weak, and energy storage is necessary to ensure its proper
functioning. Current storage technologies do not make it possible
to provide both a large capacity of energy and power at the same
time. Hybrid storage is a solution that combines the advantages of
several technologies and reduces their disadvantages. Modeling and
Control of Static Converters for Hybrid Storage Systems covers the
modeling, control theorems, and optimization techniques that solve
many scientific problems for researchers in the field of power
converter control for renewable energy hybrid storage and places
particular emphasis on the modeling and control of static
converters for hybrid storage systems. Covering topics ranging from
energy storage to power generation, this book is ideal for
automation engineers, electrical engineers, mechanical engineers,
professionals, scientists, academicians, master's and doctoral
students, and researchers in the disciplines of electrical and
mechanical engineering.
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