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Damping control of induction motor traction system in single-pulse mode of field weakening region

机译:弱磁区单脉冲模式下感应电动机牵引系统的阻尼控制

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This paper proposes a procedure to apply a damping control to induction motor driven system in the single-pulse mode. In this mode, the amplitude of voltage vector is kept constant and it is determined by the filter capacitor voltage. Therefore, there is a possibility that the oscillation of the filter capacitor voltage deteriorates the torque control performance by fluctuation of the rotor flux. In this regard, this paper examines the oscillation of filter capacitor voltage and the dynamics of rotor magnetic flux by the frequency characteristics. This study reveals that the inversed value of the resonance frequency of LC input filter should be lower than the secondary time constant of the induction motor in order to avoid influence of the oscillation of the filter capacitor voltage to the rotor flux fluctuation. The proposed method is verified by the experimental tests with 0.75-kW-class miniature-model.
机译:本文提出了一种在单脉冲模式下将阻尼控制应用于感应电动机驱动系统的程序。在此模式下,电压矢量的幅度保持恒定,并由滤波电容器电压确定。因此,滤波电容器电压的振荡有可能由于转子磁通的波动而使转矩控制性能恶化。在这方面,本文通过频率特性研究了滤波电容器电压的振荡和转子磁通的动力学。该研究表明,LC输入滤波器的谐振频率的倒数应小于感应电动机的次级时间常数,以避免滤波电容器电压的振荡对转子磁通波动的影响。 0.75kW级微型模型通过实验测试验证了该方法的有效性。

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