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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.
Electric current converters. --- Renewable energy sources. --- Alternate energy sources --- Alternative energy sources --- Energy sources, Renewable --- Sustainable energy sources --- Power resources --- Renewable natural resources --- Agriculture and energy --- Converters, Electric --- Electric converters --- Electric machinery --- Electric power supplies to apparatus --- Power electronics --- Production of electric energy or. --- Systems engineering. --- Renewable and Green Energy. --- Power Electronics, Electrical Machines and Networks. --- Circuits and Systems. --- Energy Systems. --- Engineering systems --- System engineering --- Engineering --- Industrial engineering --- System analysis --- Design and construction --- Renewable energy resources. --- Power electronics. --- Electronic circuits. --- Energy systems. --- Electron-tube circuits --- Electric circuits --- Electron tubes --- Electronics --- Electronics, Power --- Electric power
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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.
Electrical Engineering --- Electrical & Computer Engineering --- Engineering & Applied Sciences --- Electric machinery. --- Electric driving. --- Electromechanical devices --- Machinery --- Electric machinery --- Electric power --- Power transmission --- Production of electric energy or. --- Engineering. --- Engineering mathematics. --- Industrial engineering. --- Power Electronics, Electrical Machines and Networks. --- Machinery and Machine Elements. --- Mathematical and Computational Engineering. --- Industrial and Production Engineering. --- Management engineering --- Simplification in industry --- Engineering --- Value analysis (Cost control) --- Engineering analysis --- Mathematical analysis --- Construction --- Industrial arts --- Technology --- Mathematics --- Power electronics. --- Machinery. --- Applied mathematics. --- Production engineering. --- Manufacturing engineering --- Process engineering --- Industrial engineering --- Mechanical engineering --- Machines --- Manufactures --- Power (Mechanics) --- Motors --- Electronics, Power --- Electronics --- Curious devices
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This textbook bridges the gap between introductory and advanced numerical methods for engineering students. The book initially introduces readers to numerical methods before progressing to linear and nonlinear equations. Next, the book covers the topics of interpolation, curve fitting and approximation, integration, differentiation and differential equations. The book concludes with a chapter on advanced mathematical analysis which explains methods for finite difference, method of moments and finite elements. The book introduces readers to key concepts in engineering such as error analysis, algorithms, applied mathematics with the goal of giving an understanding of how to solve engineering problems using computational methods. Each of the featured topics is explained with sufficient detail while retaining the usual introductory nuance. This blend of beginner-friendly and applied information, along with reference listings makes the textbook useful to students of undergraduate and introductory graduate courses in mathematics and engineering.
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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.
Thermodynamics --- Electricity --- Relation between energy and economics --- Relation between energy and economics --- Electrical engineering --- Applied physical engineering --- Environmental protection. Environmental technology --- Equipment, services, installations in buildings --- thermodynamica --- duurzame energie --- energie-economie --- elektrische netwerken --- hernieuwbare energie --- energie (technologie) --- energietechniek --- ingenieurswetenschappen --- elektrotechniek --- elektrische circuits --- elektrische machines --- elektriciteitsproductie --- elektriciteitsdistributie
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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.
Methodology of economics --- Mathematics --- Electricity --- Electronics --- Machine elements --- Applied physical engineering --- Engineering sciences. Technology --- Production management --- Business management --- Business economics --- Equipment, services, installations in buildings --- elektrische auto's --- analyse (wiskunde) --- financieel management --- toegepaste wiskunde --- elektrische netwerken --- economie --- productie --- wiskunde --- machines --- ingenieurswetenschappen --- vermogenselektronica --- elektrische machines --- elektriciteitsdistributie
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