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Design of five-phase ferrite magnet assisted synchronous reluctance motor using lumped parameter model based optimizer and FEA

机译:基于集总参数模型的优化器和有限元分析设计五相铁氧体永磁同步磁阻电动机

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This paper proposes an efficient and reliable five-phase ferrite magnet assisted synchronous reluctance motor (Fa-SynRM) which exhibits comparable performance to a five-phase rare-earth permanent magnet based PMa-SynRM. Five-phase PMa-SynRM offers higher reliability and lower torque ripple compared to conventional three phase PMa-SynRMs, and low-cost ferrite magnet potentially decrease the manufacturing cost. However, lower strength of ferrite magnets require more magnet composition and increase stress towards the edges of flux barriers. Demagnetization of ferrite magnets is another factor to be considered in designing the Fa-SynRM. Initially, to develop an optimal and sustainable design, a lumped parameter model (LPM) based optimizer and a finite element model (FEA) has been used to extract an optimal model. The designs are further optimized to reduce the cost and develop more robust models to stress and demagnetization. Finally, the performance and cost of the developed models have been compared to those of benchmark model and initial LPM model.
机译:本文提出了一种高效可靠的五相铁氧体磁体辅助同步磁阻电机(Fa-SynRM),其性能与基于五相稀土永磁体PMa-SynRM的性能相当。与传统的三相PMa-SynRM相比,五相PMa-SynRM具有更高的可靠性和更低的转矩脉动,而且低成本的铁氧体磁体有可能降低制造成本。但是,较低强度的铁氧体磁体需要更多的磁体成分,并增加了对磁通势垒边缘的应力。铁氧体磁铁的消磁是设计Fa-SynRM时要考虑的另一个因素。最初,为了开发最佳且可持续的设计,已使用基于集总参数模型(LPM)的优化器和有限元模型(FEA)来提取最佳模型。设计经过进一步优化以降低成本,并开发出更强大的模型来消除应力和消磁。最后,将开发模型的性能和成本与基准模型和初始LPM模型的性能和成本进行了比较。

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