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Magnetization and performance analysis of a variable-flux flux-intensifying interior permanent magnet machine

机译:变通量磁通内部永磁电机的磁化及性能分析

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This paper mainly investigates the magnetization process and the performances of a variable-flux flux-intensifying interior permanent magnet machine (VFI-IPM). In conventional permanent magnet synchronous machine (PMSM), large flux-weakening current is needed to achieve a wide speed range, resulting in extra copper loss and limited power capacity. Recently, the VFI-IPM has been studied due to its feature of variable flux controllability in order to extend the speed range and obtain high efficiency at the entire torque-speed rang. Although design methodology of the VFI-IPM has been reported in literatures, investigation of the magnetization process in VFI-IPM has not been published, however, proper magnetization ratio should be recommended as the criteria to give the pulse current and design VA capability of the inverter. In this paper, principle and finite-element (FE) method of the magnetization process are discussed based on a tangentially magnetized VFI-IPM using Alnico magnet. Moreover, the performances of the machine after the PMs magnetized to different magnetization states are investigated. By comparing the efficiency maps, an optimal efficiency map and the corresponding magnetization ratio map are obtained, based on which the highest efficiency can be achieved at the entire torque-speed region.
机译:本文主要研究了可变通量通量加强内部永磁机(VFI-IPM)的磁化过程和性能。在传统的永磁同步机(PMSM)中,需要大的磁通弱电流来实现宽速度范围,从而产生额外的铜损损失和有限的电力容量。最近,已经研究了VFI-IPM由于其可变通量可控性的特征,以便在整个扭矩速度响起的速度范围内获得高效率。尽管在文献中报告了VFI-IPM的设计方法,但VFI-IPM中的磁化过程的调查尚未公布,但是应该建议适当的磁化比作为给出脉冲电流和设计VA能力的标准逆变器。本文基于使用Alnico磁铁的切向磁化的VFI-IPM讨论了磁化过程的原理和有限元(Fe)方法。此外,研究了在磁化到不同磁化状态的PMS之后机器的性能。通过比较效率图,获得最佳效率图和相应的磁化率图,基于该效率可以在整个扭矩速度区域处实现最高效率。

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