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Structural optimization of high speed permanent magnet synchronous motor for flywheel energy storage

机译:飞轮储能高速永磁同步电动机的结构优化

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With the advantages of low loss, high efficiency high-speed permanent magnet synchronous motor (HSPMSM) is widely adopted in the flywheel energy storage system (FESS). Structure parameters of the HSPMSM are optimized to achieve higher power and efficiency under the condition of same size. In this paper, a 30kW, 96000rpm HSPMSM is designed and the finite element model is established. From HSPMSM model, the motor is optimized for minimum loss and maximum efficiency. Based on the comprehensive evaluation above the impact on the motor electromagnetic parameters defined by size parameters, the optimal sizes of the motor parameters and the relationship between power, efficiency and size parameters are obtained. The prototype is manufactured and no-load experiment is finished. The result is consistent with the simulation data.
机译:随着损耗低的优点,在飞轮储能系统(FESS)中,高效高速永磁同步电动机(HSPMSM)广泛采用。 HSPMSM的结构参数经过优化,可在相同尺寸的条件下实现更高的功率和效率。在本文中,设计了30kW,96000RPM HSPMSM,建立了有限元模型。从HSPMSM型号,电机针对最小损耗和最高效率进行了优化。基于高于尺寸参数定义的电机电磁参数的综合评价,获得了电动机参数的最佳尺寸和功率,效率和尺寸参数之间的关系。原型是制造的,并且完成了空载实验。结果与模拟数据一致。

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