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Journal ArticleDOI

Fractional-Slot Concentrated-Windings Synchronous Permanent Magnet Machines: Opportunities and Challenges

Ayman El-Refaie
- 01 Jan 2010 - 
- Vol. 57, Iss: 1, pp 107-121
TLDR
This paper will cover the theory and design of FSCW synchronous PM machines, achieving high-power density, flux-weakening capability, comparison of single- versus double-layer windings, fault-tolerance rotor losses, parasitic effects, compared of interior versus surface PM machine, and various types of machines.
Abstract
Fractional-slot concentrated-winding (FSCW) synchronous permanent magnet (PM) machines have been gaining interest over the last few years. This is mainly due to the several advantages that this type of windings provides. These include high-power density, high efficiency, short end turns, high slot fill factor particularly when coupled with segmented stator structures, low cogging torque, flux-weakening capability, and fault tolerance. This paper is going to provide a thorough analysis of FSCW synchronous PM machines in terms of opportunities and challenges. This paper will cover the theory and design of FSCW synchronous PM machines, achieving high-power density, flux-weakening capability, comparison of single- versus double-layer windings, fault-tolerance rotor losses, parasitic effects, comparison of interior versus surface PM machines, and various types of machines. This paper will also provide a summary of the commercial applications that involve FSCW synchronous PM machines.

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Citations
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Proceedings ArticleDOI

A Novel DC-Biased Current Dual PM Vernier Machine

TL;DR: In this article, a novel electric machine having permanent magnets (PMs) in both stator and rotor parts, and fed with DC biased phase current is proposed, which is expected to exhibit high torque density, wide constant power operation range.
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Permanent magnet electric machine

TL;DR: An interior permanent magnet electric machine as discussed by the authors includes a stator having a plurality of teeth disposed around a circumference oriented radially towards a center defining slots interposed between each of the teeth, and a conductive winding wrapped around the teeth of the stator to receive an electrical current.
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Electropermanent magnet blank holder technique in sheet metal deep drawing

TL;DR: In this article, a novel blank holder technique based on electropermanent magnet (EPM) technology is proposed, in which independent loading of blank holding force (BHF) can be realized in sheet metal forming process.
Patent

Vehicle engine starter control systems and methods

TL;DR: In this paper, a vehicle propulsion system includes an engine configured to be selectively activated to provide torque to propel the vehicle and a starter module coupled to the engine and configured to start the engine from an inactive state.
Proceedings ArticleDOI

Eddy current loss calculation in rotor back iron for concentrated winding PM generator

TL;DR: In this article, an analytical and a finite element (FE) model of eddy current loss calculation in rotor back-iron are compared and it was concluded that the analytical method can be a first good guess to compare and select different topologies for detailed design.
References
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Book ChapterDOI

I and J

Journal ArticleDOI

Synthesis of high performance PM motors with concentrated windings

TL;DR: In this article, the authors present a synthesis of the structures of three-phase machines with concentrated windings, and a comparative analysis of the performances of the original and traditional structures is performed by using a field calculation software.
Journal ArticleDOI

Field-weakening performance of brushless synchronous AC motor drives

TL;DR: In this article, the theoretical and practical limitations to the field-weakening performance of surface permanent magnet, synchronous reluctance and interior permanent magnet motors when driven from an inverter with a limited volt-ampere rating were examined.
Journal ArticleDOI

Design considerations for fractional-slot winding configurations of synchronous machines

TL;DR: In this article, the authors presented some design considerations for synchronous machines characterized by a fractional number of slots per pole per phase, which is a smooth torque, due to the elimination of periodicity between slots and poles.
Proceedings ArticleDOI

Winding factors and Joule losses of permanent magnet machines with concentrated windings

TL;DR: In this article, the authors describe methods for designing high performance permanent magnet machines with concentrated windings, including both single and double-layer configurations of concentric windings and verify their theory using FEM analysis.
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