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Attempt to Evaluate the Building Factor of a Stator Core in Inverter-Fed Permanent Magnet Synchronous Motor

机译:尝试评估逆变器式永磁同步电动机中定子铁心的构建系数

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This paper presents an attempt to evaluate the building factor of a stator core made of nonoriented silicon steel laminations. The stator core is used in a synchronous motor with buried permanent magnets driven by a voltage source three-phase inverter with classical pulse-width modulation (PWM) control. The building factor is the ratio between the iron loss density in the stator core and the specific iron loss density of the material. It then gives an evaluation of the impact of the core manufacture and the motor geometrical configuration on the stator iron losses. A first experiment is conducted to measure the iron losses of the inverter-fed motor in no-load condition. The material-specific iron losses are then evaluated by trying to apply similar magnetic flux density conditions in a wound laminated ring. The results show a decrease of the building factor with the PWM carrier frequency.
机译:本文提出了一种尝试,以评估由无取向硅钢叠片制成的定子铁芯的构造系数。定子铁心用在带有埋入式永磁体的同步电动机中,该电动机由具有经典脉宽调制(PWM)控制的电压源三相逆变器驱动。建立因素是定子铁芯中铁损密度与材料的特定铁损密度之比。然后评估铁心制造和电动机几何形状对定子铁损的影响。进行第一个实验,以测量空载条件下的逆变器馈电电动机的铁损。然后通过尝试在绕制的叠片环中应用类似的磁通密度条件来评估材料特定的铁损。结果表明,随着PWM载波频率的增加,构建因子减小。

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