Design of high-efficiency interior permanent magnet synchronous machine with stator flux barriers and single-layer concentrated windings

V. Bilyi, D. Gerling
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引用次数: 10

Abstract

This paper presents the design of a high-performance 14-pole, 12-slot interior permanent magnet synchronous machine with flux barriers inside the stator iron core and fractional-slot concentrated windings. This work focuses on electromagnetic, mechanical and thermal aspects of the machine design. The specific goal of this work was to design an electrical machine, which will have a small size, high power-to-weight ratio, high efficiency, especially at part-load operating points, and high speed capability for traction drive applications. Therefore the unconventional stator design is used. The proposed machine design was compared with the conventional one, concerning the magnetic saturation, spectrum of the magneto-motive force and produced torque. To ensure the high speed capability of the motor, the numerical structural analysis of the rotor is shown. Temperature behavior inside of the designed motor at steady-state operating point is shown.
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具有定子磁通屏障和单层集中绕组的高效内嵌式永磁同步电机设计
本文设计了一种高性能14极、12槽、定子铁芯内磁通屏障、分槽集中绕组的内部永磁同步电机。这项工作着重于电磁、机械和热方面的机器设计。这项工作的具体目标是设计一种电机,它将具有小尺寸,高功率重量比,高效率,特别是在部分负载工作点,以及牵引驱动应用的高速能力。因此采用了非常规的定子设计。在磁饱和、磁动势谱和产生转矩等方面,与传统设计进行了比较。为了保证电机的高速性能,对转子进行了数值结构分析。给出了所设计的电机在稳态工作点时的内部温度行为。
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