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Analytical Calculation Model of an Electronically Commutated Synchronous Motor Including Parasitic Effects

机译:电子换向同步电动机的分析计算模型,包括寄生效应

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A calculation model is presented which describes the stationary operation behaviour of an electronically commutated synchronous motor, including its parasitic effects. This model is valid for permanent magnet motors, separately excited synchronous motors, and synchronous reluctance motors. The magnetomotive Force (MMF) of the air-gap is generated by thread-like surface currents placed on the surfaces of the stator and rotor. This induces a radially extending, one dimensional air-gap field. Permanent magnets are modelled by the use of magnetization current densities. The air-gap field modulation of a real synchronous motor caused by the stator slots and pole gaps of the rotor is taken into account via permeance waves. The MMF multiplied with the permeance waves of the stator and rotor yields modulated magnetic flux density waves. This concept also allows calculation of position-dependent inductances. A virtual displacement method is used to calculate the torque of the motor. It allows calculation of reluctance and cogging torques as well as torque ripple. The analytical model is verified by comparing its results to numerical finite-element method calculations.
机译:提出了一种计算模型,其描述了电子换向同步电动机的固定操作行为,包括其寄生效应。该型号适用于永磁电机,单独激励的同步电动机和同步磁阻电动机。气隙的磁影力(MMF)由放置在定子和转子的表面上的螺纹表面电流产生。这诱导径向延伸的一维气隙场。永磁体通过使用磁化电流密度来建模。通过渗透波考虑由转子的定子槽和磁极间隙引起的真实同步电动机的气隙场调制。 MMF乘以定子和转子的渗透波,产生调制的磁通密度波。该概念还允许计算位置依赖性电感。虚拟位移方法用于计算电动机的扭矩。它允许计算磁阻和齿轮扭矩以及扭矩波动。通过将其结果与数值有限元方法计算进行比较来验证分析模型。

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