Fractional Slot Concentrated Windings: Design, Analysis, and Optimization

Fractional Slot Concentrated Windings: Design, Analysis, and Optimization book cover

Fractional Slot Concentrated Windings: Design, Analysis, and Optimization

Author(s): Gurakuq Dajaku (Author)

  • Publisher: Wiley-IEEE Press
  • Publication Date: September 22, 2026
  • Edition: 1st
  • Language: English
  • Print length: 304 pages
  • ISBN-10: 1394423926
  • ISBN-13: 9781394423927

Book Description

A consolidation of all known FSCW types and their optimization methods

Fractional Slot Concentrated Windings provides an in-depth analysis of fractional slot concentrated windings (FSCWs), reviewing theoretical foundations and existing FSCWs including three-phase and multiphase windings and their optimization methods, benefits, challenges, and solutions. Numerous winding topologies for real-world applications in traction motors, aerospace systems, robotics, industrial drives, and renewable energy systems are also included.

This book delves into detailed examinations of distinct winding groups and explores optimization techniques with dedicated chapters on specialized coil configurations. For each FSCW group, the main winding topologies and their associated winding layouts are explained.

Written by a highly qualified author in the field, this book includes information on:

  • Analytical approaches for the calculations of MMF characteristics and their winding factors
  • A specific FSCW configuration with unequal zones and asymmetric zone distributions, expanding the spectrum of standard concentrated winding topologies
  • Unique winding structures, such as the two-tooth coil-pitch design, alongside a review of star-delta combination concepts for FSCWs
  • The flux-barrier technique, including the implementation of flux barriers in both the stator yoke and stator teeth regions
  • Novel winding solutions for radial-flux and axial-flux machines

Covering principles, performance, and optimization. This book serves as a comprehensive guide for engineers, researchers, and practitioners working with FSCWs in the design and optimization of modern electrical machines.

Editorial Reviews

Editorial Reviews

From the Back Cover

A consolidation of all known FSCW types and their optimization methods

Fractional Slot Concentrated Windings provides an in-depth analysis of fractional slot concentrated windings (FSCWs), reviewing theoretical foundations and existing FSCWs including three-phase and multiphase windings and their optimization methods, benefits, challenges, and solutions. Numerous winding topologies for real-world applications in traction motors, aerospace systems, robotics, industrial drives, and renewable energy systems are also included.

This book delves into detailed examinations of distinct winding groups and explores optimization techniques with dedicated chapters on specialized coil configurations. For each FSCW group, the main winding topologies and their associated winding layouts are explained.

Written by a highly qualified author in the field, this book includes information on:

  • Analytical approaches for the calculations of MMF characteristics and their winding factors
  • A specific FSCW configuration with unequal zones and asymmetric zone distributions, expanding the spectrum of standard concentrated winding topologies
  • Unique winding structures, such as the two-tooth coil-pitch design, alongside a review of star-delta combination concepts for FSCWs
  • The flux-barrier technique, including the implementation of flux barriers in both the stator yoke and stator teeth regions
  • Novel winding solutions for radial-flux and axial-flux machines

Covering principles, performance, and optimization. This book serves as a comprehensive guide for engineers, researchers, and practitioners working with FSCWs in the design and optimization of modern electrical machines.

About the Author

GURAKUQ DAJAKUis the CEO of FEAAM GmbH, the Research Center for Electrical Drives and Actuators Munich, Germany. He received the diploma degree in electrical engineering from the University of Prishtina, Kosova, in 1997, and the PhD degree from the Universität der Bundeswehr München, Munich, Germany, in 2006. Dr. Dajaku has authored/co-authored numerous technical papers published in various IEEE conferences and journals and has several German and international patents and patent pending applications.

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