Induction motor control using torque and rotor flux oriented presentation

M. Rodic, K. Jezernik
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Abstract

An approach resembling the Direct Torque and Flux Control is presented in the paper. To achieve this, the motor is first presented with the applied torque, rotor speed, rotor flux, and its derivative as states of the system. Then, using this presentation, a control algorithm is developed and evaluated. The main contribution of the work is the direct connection of the torque and flux with the applied stator voltage, which was established with the calculation of the torque and rotor flux derivatives dependant solely on the torque, rotor flux and speed. The difference between the presented method and the classical DTC algorithms is the use of the PWM voltages instead of basic voltage vectors, which results in the reduced torque and flux ripple. The performance is investigated and verified with simulations and experiments.
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感应电机的控制以转矩和转子磁链为主介绍
本文提出了一种类似于直接转矩和磁链控制的方法。为了实现这一点,电机首先与应用转矩,转子速度,转子磁链及其导数作为系统的状态。然后,利用此演示文稿,开发并评估了一种控制算法。通过计算转矩和转子磁链导数仅依赖于转矩、转子磁链和转速,建立了转矩和磁链与外加定子电压的直接联系。该方法与传统的直接转矩控制算法的不同之处在于使用PWM电压代替基本电压矢量,从而减小了转矩和磁链脉动。通过仿真和实验对其性能进行了研究和验证。
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