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Torque Ripple Improvement for Ferrite-Assisted Synchronous Reluctance Motor by Using Asymmetric Flux-barrier Arrangement.

机译:通过使用非对称性通量屏障布置对铁氧体辅助同步磁阻电动机的扭矩纹波改进。

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Ferrite-assisted synchronous reluctance motors (FASRM) provide high torque density and a wide range operation speeds for many applications, ranging from electric vehicle and electric home appliance [1]. Moreover, the ferrite magnet has received increased attention, following the increase of the price of rare earth magnet. However, the main drawback of the FASRM is the high torque ripple which will lead to serious vibration and acoustic noises [2]. Therefore, it is greatly significant to research the torque ripple suppression strategy for FASRMs, thus improving the smoothness of the torque [3]. This paper introduces a low torque ripple FASRM with asymmetrical flux barrier, which can reduce the torque ripple effectively. Novel Topology Fig. 1 shows the structure of the proposed FASRM. This motor has 48 slots and 8 poles, with two flux barriers per poles. The detailed configuration of the asymmetrical flux barrier is shown in Fig. 2. There are two kinds of flux barriers with different opening angle, and the changing of the angle based on the original flux barriers B1. The opening angle of flux barriers B2 is enlarged θ based on original flux barriers B1. In this way, a shift of the torque waveform phase can be achieved, and the torque amplitudes offset each other. In addition, the amount and location of ferrite magnets have not changed, and reduce the torque ripple effectively without sacrificing the average torque. Results The proposed method is evaluated by a theoretical analysis and finite-element method (FEM). Fig. 3 shows the no-load field distribution and on-load flux density of the proposed FASRM. It can be seen that the magnetic fields are symmetrical distributions, and the asymmetrical flux barriers will not affect the electromagnetic performance of the proposed FASRM. Fig. 4 shows the reluctance torque waveforms and harmonics. As adopted the asymmetric flux barrier arrangement, a shift of the torque waveform phase can be achieved, and the torque amplitudes offset each other. It can be seen that the reluctance torque ripple is reduced from 85% to 24%, approximately. Fig. 5 shows total torques waveform and their harmonics. It can be seen that the total torque ripple is reduced to 14%, and the 6th and 12th harmonics have been successfully eliminated.
机译:铁氧体辅助同步磁阻电动机(Fasrm)为许多应用提供高扭矩密度和宽范围的操作速度,从电动汽车和电气家用电器提供[1]。而且,在稀土磁铁价格的增加之后,铁氧体磁体已收到增加的关注。然而,Fasrm的主要缺点是高扭矩纹波,这将导致严重的振动和声噪声[2]。因此,研究Fasrms的扭矩脉动抑制策略是很大的重要性,从而提高了扭矩的平滑度[3]。本文介绍了具有不对称磁通屏障的低扭矩纹波Fasrm,可有效降低扭矩纹波。图1的新颖拓扑显示了所提出的Fasrm的结构。该电机有48个插槽和8个杆,每个磁极有两个磁通屏障。非对称通量屏障的详细配置如图2所示。有两种具有不同开口角度的磁通障碍,以及基于原始磁通屏障B的角度的变化 1 。磁通屏障B的开口角度 2 基于原始磁通屏障B的θ是放大的θ 1 。以这种方式,可以实现扭矩波形相的偏移,并且扭矩幅度彼此偏移。另外,铁氧体磁铁的量和位置没有改变,并且有效地减小扭矩纹波,而不会牺牲平均扭矩。结果采用理论分析和有限元方法(FEM)评估所提出的方法。图。图3示出了所提出的Fasrm的无负载场分布和负载通量密度。可以看出,磁场是对称的分布,并且不对称的助焊剂屏障不会影响所提出的Fasrm的电磁性能。图。图4示出了磁阻扭矩波形和谐波。如采用的不对称磁通屏障布置,可以实现扭矩波形相的偏移,并且扭矩幅度彼此偏移。可以看出,磁阻扭矩脉动从85%降低到24%,大约减少到24%。图5显示了总扭矩波形及其谐波。可以看出,总扭矩波纹减少到14%,6 th 12. th 谐波已成功消除。

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