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This book presents various computationally efficient component- and
system-level design optimization methods for advanced electrical
machines and drive systems. Readers will discover novel design
optimization concepts developed by the authors and other
researchers in the last decade, including application-oriented,
multi-disciplinary, multi-objective, multi-level, deterministic,
and robust design optimization methods. A multi-disciplinary
analysis includes various aspects of materials, electromagnetics,
thermotics, mechanics, power electronics, applied mathematics,
manufacturing technology, and quality control and management. This
book will benefit both researchers and engineers in the field of
motor and drive design and manufacturing, thus enabling the
effective development of the high-quality production of innovative,
high-performance drive systems for challenging applications, such
as green energy systems and electric vehicles.
This book examines a number of topics, mainly in connection with
advances in semiconductor devices and magnetic materials and
developments in medium and large-scale renewable power plant
technologies, grid integration techniques and new converter
topologies, including advanced digital control systems for
medium-voltage networks. The book's individual chapters provide an
extensive compilation of fundamental theories and in-depth
information on current research and development trends, while also
exploring new approaches to overcoming some critical limitations of
conventional grid integration technologies. Its main objective is
to present the design and implementation processes for
medium-voltage converters, allowing the direct grid integration of
renewable power plants without the need for step-up transformers.
This book presents various computationally efficient component- and
system-level design optimization methods for advanced electrical
machines and drive systems. Readers will discover novel design
optimization concepts developed by the authors and other
researchers in the last decade, including application-oriented,
multi-disciplinary, multi-objective, multi-level, deterministic,
and robust design optimization methods. A multi-disciplinary
analysis includes various aspects of materials, electromagnetics,
thermotics, mechanics, power electronics, applied mathematics,
manufacturing technology, and quality control and management. This
book will benefit both researchers and engineers in the field of
motor and drive design and manufacturing, thus enabling the
effective development of the high-quality production of innovative,
high-performance drive systems for challenging applications, such
as green energy systems and electric vehicles.
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