2) emissions. As'/> Preliminary studies on a new outer-rotor permanent magnet flux switching machine with hybrid excitation flux for direct drive EV applications
首页> 外文会议>2012 IEEE International Conference on Power and Energy. >Preliminary studies on a new outer-rotor permanent magnet flux switching machine with hybrid excitation flux for direct drive EV applications
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Preliminary studies on a new outer-rotor permanent magnet flux switching machine with hybrid excitation flux for direct drive EV applications

机译:新型混合动力磁通的外转子永磁通量开关机的初步研究

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摘要

Global economic growth, brings benefits of widespread car use to the world's emerging and economies. Unfortunately it has contributed in rising of global carbon dioxide (CO2) emissions. As an alternative approach in reducing the CO2 emissions of road transport is by using electric vehicle widely. Nowadays, many researchers are actively working to develop advanced electric vehicles (EVs) to help reduce carbon emission. The electric motor is one of the important roles in electric vehicles. Conventionally, most of EVs utilized permanent magnet synchronous machines (PMSM) as their traction drive, but the generated torque and power density is not sufficient especially at starting and climbing conditions. Recently, the permanent magnet flux switching synchronous machine (PMFSSM) with additional field excitation has several attractive features of high torque and power density suitable for EV drive system. This paper presents preliminary studies on design principles of a new outer-rotor PMFSSM with hybrid excitation for direct drive EV applications. The initial performances of the proposed machine are evaluated based on 2D-FEA. The initial design specifications and predicted results are also presented.
机译:全球经济增长为全球新兴经济体带来了广泛使用汽车的好处。不幸的是,它导致了全球二氧化碳(CO 2 )排放量的上升。作为减少道路运输的CO 2 排放的一种替代方法,是广泛使用电动汽车。如今,许多研究人员正在积极致力于开发先进的电动汽车(EV),以帮助减少碳排放。电动机是电动车辆中的重要角色之一。传统上,大多数电动汽车都使用永磁同步电机(PMSM)作为牵引驱动器,但是产生的扭矩和功率密度不足,特别是在起步和爬坡条件下。最近,具有附加励磁的永磁通量切换同步电机(PMFSSM)具有适用于EV驱动系统的高扭矩和高功率密度的几个吸引人的特征。本文对新型混合动力励磁外转子PMFSSM的直接驱动电动汽车应用的设计原理进行了初步研究。建议的机器的初始性能基于2D-FEA进行评估。还介绍了初始设计规范和预测结果。

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