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Jonas Juozas Buksnaitis

Six-Phase Electric Machines

Six-Phase Electric Machines

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This book presents the design methodology and electrical diagrams of symmetrical six-phase windings, which are being developed to meet the demand for high power electric drive systems that are resilient and energy efficient. Chapters are illustrated and include detailed tables that analyze energy exchange processes and reveal the advantages of six-phase windings over three-phase windings.

Format: Hardback
Length: 112 pages
Publication date: 20 April 2018
Publisher: Springer International Publishing AG


This book presents a comprehensive design methodology and electrical diagrams for symmetrical six-phase windings, which are crucial components in developing resilient and energy-efficient high power electric drive systems. It delves into the fundamental aspects of six-phase windings and highlights their advantages over traditional three-phase windings. Each chapter is accompanied by detailed illustrations and comprehensive tables that analyze energy exchange processes across electrical, magnetic, and thermal domains. These tables showcase the benefits of six-phase windings in terms of efficiency, power density, and reduced losses. By presenting a thorough exploration of symmetrical six-phase windings, this book serves as a valuable resource for researchers, engineers, and practitioners in the field of electric motors and drives.


Introduction:
The demand for high power electric drive systems is on the rise, driven by the need for more sustainable and efficient transportation. Traditional three-phase windings have limitations in terms of power density, efficiency, and resilience. As a result, there is a growing interest in developing alternative windings, such as six-phase windings.
Design Methodology:
This book provides a detailed design methodology for symmetrical six-phase windings. It begins by discussing the principles of six-phase winding and the advantages it offers over three-phase windings. The authors then outline the steps involved in designing symmetrical six-phase windings, including selecting the number of phases, determining the winding configuration, and optimizing the magnetic field distribution.
Electrical Diagrams:
The book includes comprehensive electrical diagrams for symmetrical six-phase windings. These diagrams illustrate the winding layout, the connections between the phases, and the electrical characteristics of each phase. The diagrams also highlight the differences between symmetrical and asymmetrical six-phase windings, and discuss the advantages and disadvantages of each configuration.
Energy Exchange Processes:
Chapters in the book provide a detailed analysis of energy exchange processes in symmetrical six-phase windings. It covers topics such as electrical power transfer, magnetic flux distribution, and thermal effects. The authors use detailed tables and illustrations to explain these processes and demonstrate the advantages of six-phase windings over three-phase windings.
Advantages of Six-Phase Windings:
The book highlights the advantages of six-phase windings in terms of efficiency, power density, and reduced losses. It discusses how six-phase windings can improve the performance of electric motors, particularly in high-speed applications. The authors also discuss the potential applications of six-phase windings in industries such as electric vehicles, renewable energy systems, and industrial automation.
Conclusion:
In conclusion, this book presents a comprehensive design methodology and electrical diagrams for symmetrical six-phase windings. It provides a deep understanding of the principles and advantages of six-phase windings, and serves as a valuable resource for researchers, engineers, and practitioners in the field of electric motors and drives. By exploring the energy exchange processes and highlighting the benefits of six-phase windings, this book contributes to the development of resilient and energy-efficient high power electric drive systems.

Weight: 350g
Dimension: 164 x 246 x 10 (mm)
ISBN-13: 9783319758282
Edition number: 1st ed. 2018

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