Electrical Machines and Drives

Fundamentals and Advanced Modelling

Nonfiction, Science & Nature, Technology, Machinery, Manufacturing
Cover of the book Electrical Machines and Drives by Jan A. Melkebeek, Springer International Publishing
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: Jan A. Melkebeek ISBN: 9783319727301
Publisher: Springer International Publishing Publication: January 20, 2018
Imprint: Springer Language: English
Author: Jan A. Melkebeek
ISBN: 9783319727301
Publisher: Springer International Publishing
Publication: January 20, 2018
Imprint: Springer
Language: English

This book aims to offer a thorough study and reference textbook on electrical machines and drives. The basic idea is to start from the pure electromagnetic principles to derive the equivalent circuits and steady-state equations of the most common electrical machines (in the first parts). Although the book mainly concentrates on rotating field machines, the first two chapters are devoted to transformers and DC commutator machines. The chapter on transformers is included as an introduction to induction and synchronous machines, their electromagnetics and equivalent circuits. Chapters three and four offer an in-depth study of induction and synchronous machines, respectively. Starting from their electromagnetics, steady-state equations and equivalent circuits are derived, from which their basic properties can be deduced. The second part discusses the main power-electronic supplies for electrical drives, for example rectifiers, choppers, cycloconverters and inverters. Much attention is paid to PWM techniques for inverters and the resulting harmonic content in the output waveform. In the third part, electrical drives are discussed, combining the traditional (rotating field and DC commutator) electrical machines treated in the first part and the power electronics of part two. Field orientation of induction and synchronous machines are discussed in detail, as well as direct torque control. In addition, also switched reluctance machines and stepping motors are discussed in the last chapters. Finally, part 4 is devoted to the dynamics of traditional electrical machines. Also for the dynamics of induction and synchronous machine drives, the electromagnetics are used as the starting point to derive the dynamic models. Throughout part 4, much attention is paid to the derivation of analytical models. But, of course, the basic dynamic properties and probable causes of instability of induction and synchronous machine drives are discussed in detail as well, with the derived models for stability in the small as starting point. In addition to the study of the stability in the small, a chapter is devoted to large-scale dynamics as well (e.g. sudden short-circuit of synchronous machines). The textbook is used as the course text for the Bachelor’s and Master’s programme in electrical and mechanical engineering at the Faculty of Engineering and Architecture of Ghent University. Parts 1 and 2 are taught in the basic course ’Fundamentals of Electric Drives’ in the third bachelor. Part 3 is used for the course ’Controlled Electrical Drives’ in the first master, while Part 4 is used in the specialised master on electrical energy.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

This book aims to offer a thorough study and reference textbook on electrical machines and drives. The basic idea is to start from the pure electromagnetic principles to derive the equivalent circuits and steady-state equations of the most common electrical machines (in the first parts). Although the book mainly concentrates on rotating field machines, the first two chapters are devoted to transformers and DC commutator machines. The chapter on transformers is included as an introduction to induction and synchronous machines, their electromagnetics and equivalent circuits. Chapters three and four offer an in-depth study of induction and synchronous machines, respectively. Starting from their electromagnetics, steady-state equations and equivalent circuits are derived, from which their basic properties can be deduced. The second part discusses the main power-electronic supplies for electrical drives, for example rectifiers, choppers, cycloconverters and inverters. Much attention is paid to PWM techniques for inverters and the resulting harmonic content in the output waveform. In the third part, electrical drives are discussed, combining the traditional (rotating field and DC commutator) electrical machines treated in the first part and the power electronics of part two. Field orientation of induction and synchronous machines are discussed in detail, as well as direct torque control. In addition, also switched reluctance machines and stepping motors are discussed in the last chapters. Finally, part 4 is devoted to the dynamics of traditional electrical machines. Also for the dynamics of induction and synchronous machine drives, the electromagnetics are used as the starting point to derive the dynamic models. Throughout part 4, much attention is paid to the derivation of analytical models. But, of course, the basic dynamic properties and probable causes of instability of induction and synchronous machine drives are discussed in detail as well, with the derived models for stability in the small as starting point. In addition to the study of the stability in the small, a chapter is devoted to large-scale dynamics as well (e.g. sudden short-circuit of synchronous machines). The textbook is used as the course text for the Bachelor’s and Master’s programme in electrical and mechanical engineering at the Faculty of Engineering and Architecture of Ghent University. Parts 1 and 2 are taught in the basic course ’Fundamentals of Electric Drives’ in the third bachelor. Part 3 is used for the course ’Controlled Electrical Drives’ in the first master, while Part 4 is used in the specialised master on electrical energy.

More books from Springer International Publishing

Cover of the book Advances in Reinforced Soil Structures by Jan A. Melkebeek
Cover of the book Stochastic Analysis for Poisson Point Processes by Jan A. Melkebeek
Cover of the book Nonlinear Analysis and Prediction of Time Series in Multiphase Reactors by Jan A. Melkebeek
Cover of the book A Journey Around the Different Scales Involved in the Description of Matter and Complex Systems by Jan A. Melkebeek
Cover of the book Stem Surface Area in Modeling of Forest Stands by Jan A. Melkebeek
Cover of the book Muslim Custodians of Jewish Spaces in Morocco by Jan A. Melkebeek
Cover of the book TMS 2017 146th Annual Meeting & Exhibition Supplemental Proceedings by Jan A. Melkebeek
Cover of the book Design of Efficient and Safe Neural Stimulators by Jan A. Melkebeek
Cover of the book The Tidal Disruption of Stars by Supermassive Black Holes by Jan A. Melkebeek
Cover of the book Groundwater and Global Change in the Western Mediterranean Area by Jan A. Melkebeek
Cover of the book Quality of Life and Daily Travel by Jan A. Melkebeek
Cover of the book Dual-Mode Electro-photonic Silicon Biosensors by Jan A. Melkebeek
Cover of the book Information and Software Technologies by Jan A. Melkebeek
Cover of the book Universal Access in Human–Computer Interaction. Human and Technological Environments by Jan A. Melkebeek
Cover of the book Hemodiafiltration by Jan A. Melkebeek
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy