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Multi-objective optimisation design and performance comparison of permanent magnet synchronous motor for EVs based on FEA

机译:基于有限元分析的电动汽车永磁同步电动机多目标优化设计与性能比较

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摘要

The requirements of high efficiency, power density, and low price for the motor of electric vehicles (EVs) make the design of the driving motor become a process of multi-objective optimisation. For purpose of the permanent magnet synchronous motor (PMSM) used for EVs has the higher efficiency, wider range of speed regulation with flux-weakening and better cost superiority, a multi-objective optimisation design approach based on finite element analysis (FEA) and modified particle swarm optimisation (MPSO) algorithm which takes efficiency, flux-weakening rate, and price as optimisation objectives is proposed in this study. Five PMSMs with different rotor topologies (V-shape, U-shape, double V-shape, delta-shape, and double tangential-shape) are optimised by the proposed optimisation method and their performance characteristics, including flux-weakening ability, efficiency, price, and anti-demagnetisation ability, are compared. The results suggest that double V-shape rotor topology has the wider constant power range and double-layer PMs topology has stronger anti-demagnetisation ability and wider high efficiency interval, whereas single-layer topology has lower cost price. Furthermore, a PMSM prototype with V-shape PMs is manufactured, so that the feasibility of multi-objective optimisation design approach and accuracy of FEA are verified by prototype experiments.
机译:电动汽车(EV)电机对高效率,功率密度和低价的要求,使驱动电机的设计成为多目标优化的过程。针对用于电动汽车的永磁同步电动机(PMSM)具有更高的效率,更宽的调速范围以及更弱的磁通和更好的成本优势,基于有限元分析(FEA)的多目标优化设计方法提出了一种以效率,磁通弱化率和价格为优化目标的粒子群优化算法。通过提出的优化方法对五个具有不同转子拓扑(V形,U形,双V形,三角形和双切线形)的永磁同步电机进行了优化,并优化了它们的性能特征,包括弱磁通能力,效率,比较了价格和抗退磁能力。结果表明,双V形转子拓扑具有较宽的恒定功率范围,双层永磁体拓扑具有更强的抗退磁能力和较高的效率区间,而单层拓扑具有较低的成本价格。此外,制造了带有V型PM的PMSM原型,从而通过原型实验验证了多目标优化设计方法的可行性和FEA的准确性。

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