该公式的建立为轴向磁场永磁同步电动机的性能分析及预测创造了条件。
The foundation of those equations create conditions for the performance analysis and prediction of axial-field permanent magnet synchronous motor.
该文对一种新型的应用于电动车辆驱动的直驱轮用轴向磁场永磁同步电动机的进行了设计。
The paper introduced the design of a new-type direct-drive in-wheel axial flux permanent magnet synchronous machine specially designed for electric vehicle applications.
提出的新型可植入式人工心脏是由轴向磁场结构的永磁同步电动机直接驱动。
This paper presents a novel artificial heart, which is directly driven by a compact permanent magnet synchronous motor (PMSM) with axial-field configuration.
提出了一种混合磁路多边耦合电机,对混合式步进电机永磁体产生的气隙磁场沿轴向分布不均匀的问题进行了补偿。
The paper puts forward a hybrid magnetic circuit multi couple electric machine that compensates for the uneven air gap magnetic field of the hybrid stepping motor.
其次,电机参数是仿真研究电机运行特性的基础,为了准确计算该种电机的电磁参数,对轴向分段式外永磁转子爪极电机进行了磁场分析。
Secondly, parameters of electric machine are research foundation of operating characteristics, in order to acquire the parameters of ASCPM correctly, magnetic analysis about ASCPM is done.
其次,电机参数是仿真研究电机运行特性的基础,为了准确计算该种电机的电磁参数,对轴向分段式外永磁转子爪极电机进行了磁场分析。
Secondly, parameters of electric machine are research foundation of operating characteristics, in order to acquire the parameters of ASCPM correctly, magnetic analysis about ASCPM is done.
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