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Performance evaluation of a direct torque controlled drive in the continuous PWM-square wave transition region

机译:连续PWM方波过渡区域中直接转矩控制驱动器的性能评估

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A simplified method of torque and flux control in the transient and field-weakening region based on the direct torque control (DTC) scheme is presented. The simplified method limits the magnitude of the stator voltage reference to the maximum instantaneous value allowable with space vector PWM. The simplified method was compared to an alternative technique which attempts to maintain dead beat control of one of the controlled variables during a transient in the other. The angle of the reference voltage is set equal to that calculated using the previously presented direct torque control method. It is the opinion of the authors that the simplified control scheme yields very satisfactory results, in comparison to the other control, and that the advantages gained by the reduced complexity outweigh the fact that dead-beat control is not available in transient and overmodulation conditions. The direct torque control scheme provides increased bus voltage utilization, and increased dynamic response due to the real-time, predictive nature of the control. This was verified through simulation and experimental results.
机译:提出了一种基于直接转矩控制(DTC)的瞬态和弱磁区域转矩和磁通控制的简化方法。简化方法将定子电压参考的大小限制为空间矢量PWM允许的最大瞬时值。将该简化方法与另一种技术进行了比较,该技术试图在另一个瞬态过程中保持对一个受控变量的无差拍控制。参考电压的角度设置为等于使用先前介绍的直接转矩控制方法计算得出的角度。作者认为,与其他控制相比,简化的控制方案可产生非常令人满意的结果,而降低的复杂度所获得的优势胜过在瞬态和过调制条件下无差拍控制的事实。由于控制的实时性,预测性,直接转矩控制方案可提高总线电压利用率,并提高动态响应。通过仿真和实验结果对此进行了验证。

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