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Improved ferrite magnet vernier machine for an in-wheel machine

机译:用于轮毂电机的改进的铁氧体磁铁游标机

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Directly driven in-wheel machines are required to generate high output power at low speed. The authors previously proposed the use of a permanent magnet vernier machine, which is suitable for applications that require large torque. The remarkable feature of the previously proposed machine is the use of only ferrite magnets in a ‘V’ configuration. This machine satisfied the required output characteristics of the in-wheel machine for EV and demonstrated high efficiency in computer simulations based on FEA. However, the design of this machine was somewhat problematic. Therefore, the present paper discusses downsizing of the machine, providing a wider air gap, and the use of concentrated windings. We have achieved an effective design for downsizing while maintaining the output and the torque density. The volume of the newly designed machine is 53% smaller than that of the previous machine, and target performances of 40 kW and 400 Nm were obtained.
机译:需要直接驱动的轮毂电机以低速产生高输出功率。作者先前提出使用永磁游标机,该电机适用于需要大扭矩的应用。先前提出的机器的显着特点是仅使用“ V”配置的铁氧体磁体。该机器满足了电动汽车用轮毂机所需的输出特性,并在基于FEA的计算机仿真中证明了其高效率。但是,这台机器的设计有些问题。因此,本文讨论了电机的小型化,提供更大的气隙以及集中绕组的使用。我们已经实现了一种有效的设计,既可以减小尺寸,又可以保持输出和扭矩密度。新设计的机器体积比以前的机器小53%,并获得了40 kW和400 Nm的目标性能。

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