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Introduction to Modern Analysis of Electric Machines and Drives

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Introduction to Modern Analysis of Electric Machines and Drives by Thomas C. Krause and Paul C. Krause provides a comprehensive exploration of the principles and analytical techniques used in the design and study of electric machines and drives. It covers the latest innovations in the field, stressing practical applications and theoretical concepts essential for understanding and engineering. Ideal for students and professionals, the book integrates modern advancements with fundamental knowledge, facilitating a deeper grasp of electric machinery and their drive systems.
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Format: Hardback
$23899
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Book Hero Magic created this recommendation. While it's new and still learning, it may not be perfect - your feedback is welcome! IS THIS YOUR NEXT READ?

This book may appeal to you if you are interested in science and nature, specifically focusing on understanding the modern analysis of electric machines and drives. It offers a detailed, comprehensive approach to contemporary electrical engineering principles, making it ideal for students, professionals, or enthusiasts wanting to deepen their knowledge in this field.

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Book Hero Magic formatted this description to make it easier to read. While it's new and still learning, it may not be perfect - your feedback is welcome! Description

Introduction to Modern Analysis of Electric Machines and Drives

Comprehensive resource introducing magnetic circuits and rotating electric machinery, including models and discussions of control techniques.

Introduction to Modern Analysis of Electric Machines and Drives is written for the junior or senior student in Electrical Engineering and covers the essential topic of machine analysis for those interested in power systems or drives engineering. The analysis contained in the text is based on Tesla’s rotating magnetic field and reference frame theory, which comes from Tesla’s work and is presented for the first time in an easy-to-understand format for the typical student.

Since the stators of synchronous and induction machines are the same for analysis purposes, they are analysed just once. Only the rotors are different and therefore analysed separately. This approach makes it possible to cover the analysis efficiently and concisely without repeating derivations. In fact, the synchronous generator equations are obtained from the equivalent circuit, which is obtained from work in other chapters without any derivation of equations. This differentiates Introduction to Modern Analysis of Electric Machines and Drives from all other textbooks in this area.

Topics explored by the two highly qualified authors in Introduction to Modern Analysis of Electric Machines and Drives include:

  • Common analysis tools, covering steady-state phasor calculations, stationary magnetically linear systems, winding configurations, and two- and three-phase stators.
  • Analysis of the symmetrical stator, covering the change of variables in two- and three-phase transformations and more.
  • Symmetrical induction machines, covering symmetrical two-pole two-phase rotor windings, electromagnetic force and torque, and p-pole machines.
  • Direct current machines and drives, covering commutation, voltage and torque equations, permanent-magnet DC machines, and DC drives.

Introduction to Modern Analysis of Electric Machines and Drives is appropriate as either a first or second course in the power and drives area. Once the reader has covered the material in this book, they will have a sufficient background to start advanced study in the power systems or drives areas.

Series: IEEE Press Series on Power and Energy Systems

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Book Details

INFORMATION

ISBN: 9781119908159

Publisher: John Wiley & Sons Inc

Format: Hardback

Date Published: 19 December 2022

Country: United States

Imprint: Wiley-IEEE Press

Audience: Professional and scholarly

DIMENSIONS

Weight: 539g

Pages: 272

About the Author

Paul C. Krause, PhD, started PC Krause and Associates, Inc. in 1983. He was a Professor in the School of Electrical and Computer Engineering at Purdue University for 39 years. He is a Life Fellow of the IEEE and has authored or co-authored over 100 technical papers and three textbooks on electric machines. He was the recipient of the IEEE Nikola Tesla Award in 2010.

Thomas C. Krause received the B.S degree in electrical engineering from Purdue University, West Lafayette, IN, USA, in 2019 and the M.S. degree in electrical engineering and computer science from the Massachusetts Institute of Technology, Cambridge, MA, USA, in 2021. He is currently pursuing the PhD degree with the Massachusetts Institute of Technology.

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