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Fundamentals of Electrical Drives: Power Systems

Autor Andre Veltman, Duco W.J. Pulle, R.W. de Doncker
en Limba Engleză Hardback – 17 iun 2016
This book helps students and engineers appreciate and understand the fundamental concepts of the modern electrical drives used in thousands of applications, from robotics and household appliances to wind turbines and hybrid vehicles. Updates to this second edition cover innovations in machine design, power semi-conductors, digital signal processors and simulation software. An interactive learning approach is taken in this text: theory and calculations are augmented by generic models which are transposed to a simulation platform. This 'build and play' method visualizes the dynamic operation of a comprehensive set of modules ranging from an inductance to a novel 'ideal rotating transformer' (IRTF). This module is at the center of the generic models used to explore the dynamic and steady state operation of grid and converter fed induction, synchronous and DC machines. The section on modulation and control emphasizes the role of power electronics and digital signal processors in drives. All figures in this text are included in the downloadable files in order to help with the preparation of customized Power Point type lecture material. Fundamentals of Electrical Drives is perfect for readers with basic engineering knowledge who have a need or desire to comprehend and apply the theory and simulation methods utilized by drive specialists throughout the world.



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Specificații

ISBN-13: 9783319294087
ISBN-10: 3319294083
Pagini: 359
Ilustrații: XXI, 341 p. 297 illus., 243 illus. in color.
Dimensiuni: 155 x 235 x 26 mm
Greutate: 6.68 kg
Ediția:2nd ed. 2016
Editura: Springer International Publishing
Colecția Springer
Seria Power Systems

Locul publicării:Cham, Switzerland

Cuprins

Introduction.- Simple Electro-Magnetic Circuits.- The Transformer.- Three-Phase Circuits.- Concept Of Real And Reactive Power.- Space Vector Based Transformer Models.- Introduction To Electrical Machines.- Voltage Source Connected Synchronous Machines.- Voltage Source Connected Asynchronous Machines.- Direct Current Machines.- Pulse Width Modulation And Current Control For DC Drives.- A Concept of Sinusoidal Distributed Wingdings.

Notă biografică

Dr. Duco Pulle is Founder and Director of EM synergy, Inc. and Guest Professor at The Institute for Power Electronics and Electrical Drives (ISEA) at RWTH Aachen University. He is the author of previous Springer titles in the Power Systems Series, Fundamentals of Electrical Drives and Advanced Electrical Drives.

Dr. ir. André Veltman is director of Piak Electronic Design B.V. in the Netherlands and (co-)author of two other Springer titles on Electrical Drives.
Rik W. De Doncker is Professor of Electrical Engineering at Aachen University of Technology, Aachen, Germany, where he leads the Institute for Power Electronics and Electrical Drives. In Oct. 2006 he was also appointed director of the E.ON Energy Research Center at RWTH Aachen University, where he leads the Institute for Power Generation and Storage Systems. He has published over 170 technical papers and is holder of 25 patents, with several pending. He is past president of the IEEE Power Electronics Society (PELS) and was founding Chairman of the German IEEE IAS-PELS Joint Chapter. Dr. De Doncker is recipient of the IAS Outstanding Achievements Award and the IEEE Power Engineering Custom Power Award.

Textul de pe ultima copertă

  • Comprehensive, user-friendly, color illustrated introductory text for electrical drive systems that simplifies the understanding of electrical machine principles
  • Updated edition covers innovations in machine design, power semi-conductors, digital signal processors and simulation software
  • Presents dynamic generic models which cover all major electrical machine types and modulation/control components of a drive
  • Covers dynamic and steady state analysis of transformers and electrical machines
  • Interactive learning process provided online, using ‘build and play’ simulation tutorials to help the reader visualize the physical processes that take place in the drive
This book helps students and engineers appreciate and understand the fundamental concepts of the modern electrical drives used in thousands of applications, from robotics and household appliances to wind turbines and hybrid vehicles. Updates to this second edition cover innovations in machine design, power semi-conductors, digital signal processors and simulation software. An interactive learning approach is taken in this text: theory and calculations are augmented by generic models which are transposed to a simulation platform. This 'build and play' method visualizes the dynamic operation of a comprehensive set of modules ranging from an inductance to a novel 'ideal rotating transformer' (IRTF). This module is at the center of the generic models used to explore the dynamic and steady state operation of grid and converter fed induction, synchronous and DC machines. The section on modulation and control emphasizes the role of power electronics and digital signal processors in drives. All figures in this text are included in the downloadable files in order to help with the preparation of customized Power Point type lecture material. Fundamentals of Electrical Drives is perfect for readers with basic engineering knowledge who have a need or desire to comprehend and apply the theory and simulation methods utilized by drive specialists throughout the world.


Caracteristici

Comprehensive, user-friendly, color illustrated introductory text for electrical drive systems that simplifies the understanding of electrical machine principles Updated edition covers innovations in machine design, power semi-conductors, digital signal processors and simulation software Presents dynamic generic models which cover all major electrical machine types and modulation/control components of a drive Covers dynamic and steady state analysis of transformers and electrical machines Interactive learning process provided online, using ‘build and play’ simulation tutorials to help the reader visualize the physical processes that take place in the drive Includes supplementary material: sn.pub/extras