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A new direct torque control scheme for PMSM with on-line stator resistance tuning

机译:在线定子电阻调节的永磁同步电机新的直接转矩控制方案

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摘要

The electromagnetic torque in a PMSM is proportional to the angle between the stator and rotor flux linkage, thus, high dynamic response can be achieved by means of direct torque control. The main advantage of DTC is its simple structure since no coordinate transformations or PWM generation are needed. In this paper, an improved scheme to solve the torque and the stator flux linkage ripples of direct torque control (DTC) for a permanent magnet synchronous motor is proposed. Moreover, the fuzzy DTC control strategy based on fuzzy controller using the space vector modulation (SVM) is designed and presented in this paper. The variation of stator resistance due to changes in temperature or frequency degrades the performance of DTC controlled by introducing errors in the estimated flux linkage vector and the electromagnetic torque. Compensation for the effect of stator resistance variation then becomes necessary. Estimation of the stator resistance and its compensation using a PI estimation has been proposed in this paper.
机译:PMSM中的电磁转矩与定子和转子磁链之间的角度成正比,因此,可以通过直接转矩控制实现高动态响应。 DTC的主要优点是其结构简单,因为不需要坐标转换或PWM生成。提出了一种解决永磁同步电动机直接转矩控制(DTC)转矩和定子磁链波动的改进方案。此外,本文设计并提出了基于模糊控制器的空间矢量调制(SVM)模糊DTC控制策略。由于温度或频率变化而引起的定子电阻变化会降低DTC的性能,而DTC的性能是通过在估计的磁链矢量和电磁转矩中引入误差来控制的。因此,必须补偿定子电阻变化的影响。本文提出了使用PI估计来估计定子电阻及其补偿的方法。

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