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Novel hybrid excited machine with flux barriers in rotor structure

机译:转子结构中带有磁通屏障的新型混合励磁电机

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PurposePermanent magnet (PM) electrical machines are becoming one of the most popular type of the machines used in electrical vehicle drive applications. The main drawback of permanent magnet machines, despite obvious advantages, is associated with the flux control capability, which is limited at high rotor speeds of the machine. This paper aims to present a new arrangement of permanent magnets and flux barriers in the rotor structure to improve the field weakening control of hybrid excited machines. The field weakening characteristics, back-emf waveforms and efficiency maps of this novel machine have been reported.Design/methodology/approachIn the study, finite element analysis was used to perform simulation research. Then, based on the simulation studies, an experimental model was built. The paper also presents selected experimental results.FindingsObtained results show that the proposed machine topology and novel control strategy can offer an effective flux control method allowing to extend the maximal rotational speed of the machine at constant power range.Practical implicationsThe proposed solution can be used in electric vehicles drive to extend its torque and speed range.Originality/valueThe paper presents original design and results of research on a new solution of a hybrid excited machine with magnetic barriers in a rotor.
机译:目的 n永磁(PM)电机正成为电动车辆驱动应用中使用最广泛的电机之一。尽管具有明显的优势,永磁电机的主要缺点还是与磁通控制能力有关,该能力在电机的高转子速度下受到限制。本文旨在提出一种新型的永磁体和磁通势垒在转子结构中的布置,以改善混合励磁电机的弱磁场控制。 n设计/方法/方法 n在本研究中,使用了有限元分析进行了仿真研究。 n设计,方法/方法 n已经报道了这种新型机器的弱磁场特性,反电动势波形和效率图。然后,基于仿真研究,建立了实验模型。本文还提供了一些选定的实验结果。 n发现 n获得的结果表明,所提出的机器拓扑结构和新颖的控制策略可以提供一种有效的磁通控制方法,从而可以在恒定功率范围内扩展机器的最大转速。 n实践意义 n建议的解决方案可用于电动汽车驱动器,以扩展其转矩和速度范围。 n原始值/ n本文介绍了转子中带有磁障的混合励磁电机的新解决方案的原始设计和研究结果。

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