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Parameter optimization study and performance analysis of 6S-8P permanent magnet flux switching machine with field excitation for high speed hybrid electric vehicles

机译:6S-8P永磁磁通开关机的参数优化研究与高速混合动动电动电动汽车励磁磁通开关机的性能分析

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摘要

Over the past decade, many automotive companies have been commercializing HEVs. Most of them employ interior permanent magnet synchronous machine (IPMSM) using rare-earth magnet as their main traction drives from viewpoints of high torque and power density and high efficiency over most of operating torque-speed ranges. However, since all permanent magnets (PMs) are located on rotor part, a design approach to ensure mechanical strength of the rotor depends on rib thickness and number of bridges between PMs. The increase in the number of bridges improves the mechanical strength, but reduces the maximum torque of the machine due to an increase in leakage flux of PM. To overcome this problem, 6S-8P permanent magnet flux switching machine with additional field excitation coil is presented. The proposed machine has all active parts on the stator body and a rugged rotor structure suitable for high speed operation. Some design parameter refinements are conducted to this machine in order to elevate maximum torque and maximum power densities. As a result, it is shown that the proposed machine after the design refinements becomes a good candidate for target HEV drive applications.
机译:在过去十年中,许多汽车公司一直在商业化HEV。它们中的大多数采用内部永磁同步机(IPMSM)使用稀土磁铁作为其主要牵引驱动,从高扭矩和功率密度的观点和大部分工作扭矩速度范围内的高效率。然而,由于所有永磁体(PMS)位于转子部分上,所以确保转子机械强度的设计方法取决于肋厚度和PMS之间的桥梁数。桥梁数量的增加提高了机械强度,但由于PM泄漏通量的增加,机器的最大扭矩降低。为了克服这个问题,提出了具有额外场励磁线圈的6S-8P永磁通量开关机。所提出的机器在定子体上具有所有有源部件和适用于高速操作的坚固的转子结构。一些设计参数改进是对本机进行的,以提高最大扭矩和最大功率密度。结果,示出了设计改进后所提出的机器成为目标HEV驱动应用的良好候选者。

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