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Design optimization of rare-earth free PM-assisted synchronous reluctance motor to improve demagnetization prevention capability

机译:无稀土永磁永磁同步磁阻电机的设计优化,提高防退磁能力

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This paper presents the design optimization of rare-earth-free permanent magnet assisted synchronous reluctance motor (PMSynRM) with an objective to improve the demagnetization prevention capability. Ferrite magnet is a common rare-earth-free permanent magnet (PM) which is attracting the manufacturers with its lower price and abundant supply compared to rare-earth materials such as Neodymium, Samarium, and Cerium based PMs. However, due to lower coercive force, Ferrite magnets have a higher risk of getting demagnetized than rare-earth magnets. Therefore, Ferrite based motor should be carefully designed so that the magnets do not get demagnetized at any desired operating condition. This study proposes a Ferrite magnet based PMSynRM (F-PMSynRM) with non-conventional flux-barrier structures to improve its demagnetization prevention capability while maintaining the same output power as a conventional F-PMSynRM. The equivalent magnetic circuit (EMC) has been used to obtain and justify the proposed motor of improved demagnetization prevention capability. Besides, finite element analysis (FEA) results have been presented to compare the proposed motor and conventional motor in terms of their electromagnetic torque, back-emf, stress and demagnetization preventive capability. Experimental results of the no-load induced voltage have been provided to validate the analytical and simulation results.
机译:本文提出了一种无稀土永磁辅助同步磁阻电动机(PMSynRM)的设计优化,目的是提高防退磁能力。铁氧体磁体是一种常见的无稀土永磁体(PM),与诸如钕,Sa和铈基永磁体等稀土材料相比,铁氧体磁体以较低的价格和充足的供应量吸引着制造商。但是,由于矫顽力较低,与稀土类磁铁相比,铁氧体磁铁具有更高的退磁风险。因此,应仔细设计基于铁氧体的电动机,以使磁体在任何所需的运行条件下都不会退磁。这项研究提出了一种具有非常规磁通势垒结构的基于铁氧体磁体的PMSynRM(F-PMSynRM),以提高其防退磁能力,同时保持与传统F-PMSynRM相同的输出功率。已使用等效磁路(EMC)来获得所提出的电动机并证明其具有改进的防退磁能力。此外,还给出了有限元分析(FEA)结果,以从电磁转矩,反电动势,应力和防磁能力方面比较建议的电动机和常规电动机。提供了空载感应电压的实验结果,以验证分析和仿真结果。

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