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首页> 外文期刊>Magnetics, IEEE Transactions on >High Power Density Design of 6-Slot–8-Pole Hybrid Excitation Flux Switching Machine for Hybrid Electric Vehicles
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High Power Density Design of 6-Slot–8-Pole Hybrid Excitation Flux Switching Machine for Hybrid Electric Vehicles

机译:混合动力汽车6槽8极混合励磁磁通开关机的高功率密度设计

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摘要

Over the last decade, many automotive companies have been commercializing hybrid electric vehicles (HEVs) as one of candidates for sustainable human life. Some of the recent HEVs employ electric propulsion systems using a combination of reduction gear and interior permanent magnet synchronous motors (IPMSM) operated by relatively high-speed more than 12 000 r/min, resulting in achieving high torque and power densities simultaneously. In the combination, since all rare-earth permanent magnets are embedded in its rotor core, a machine design of high-speed IPMSM tends to be difficult. This is due to a design confliction between keeping enough mechanical strength of the rotor core and bringing out better electromagnetic performances. To cope with this problem, this paper deals with a 6-slot–8-pole hybrid excitation flux switching machine, in which both permanent magnets and wound field excitation are employed as magnetomotive force sources. This machine has all active parts on the stator body and a rugged rotor structure similar to that of switched reluctance motor suitable for high-speed operation. Some design parameter refinements are conducted to the machine in order to elevate maximum torque capability and maximum power density as much as possible under given design requirements and constraints. As a result, it is demonstrated that the machine designed becomes a good candidate for the target HEV drive application.
机译:在过去的十年中,许多汽车公司已经将混合动力汽车(HEV)商业化,以作为可持续人类生活的候选者之一。最近的一些混合动力汽车采用电​​力驱动系统,该系统采用减速齿轮和内部永磁同步电动机(IPMSM)的组合,以超过12 000 r / min的较高速度运行,从而同时实现了高扭矩和功率密度。在这种组合中,由于所有稀土永磁体都嵌入其转子铁芯中,因此高速IPMSM的机械设计趋于困难。这是由于在保持转子铁芯的足够机械强度与实现更好的电磁性能之间存在设计冲突。为了解决这个问题,本文研究了一种6槽– 8极混合励磁磁通切换机,其中永磁体和绕线励磁都用作磁通势动力源。该机器在定子本体上具有所有活动部件,并且具有坚固的转子结构,类似于适用于高速运行的开关磁阻电机。在给定的设计要求和约束下,对机器进行了一些设计参数改进,以尽可能提高最大扭矩能力和最大功率密度。结果表明,所设计的机器成为目标HEV驱动器应用的理想选择。

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