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A Modified Flux Regulation Method to Minimize Switching Frequency and Improve DTC-Hysteresis-Based Induction Machines in Low-Speed Regions

机译:一种改进的磁通调节方法,可将开关频率降至最低,并改善低速区域基于DTC磁滞的感应电机

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摘要

Direct torque control (DTC) suffers from flux droop owing to the long zero-voltage vectors at low motor speeds. Previous studies were able to attain flux regulation by imposing the continuous switching of forward and reverse active-voltage vectors by causing torque overshoots in the torque hysteresis bands (THBs). This led to an excessive increase in the switching frequency and larger torque and current ripples, thus reducing the drive efficiency. In this paper, a modified flux regulation method is proposed for the classical DTC using a single THB when flux droop occurs in a low-rotor-speed range. The proposed method can protect the DTC from flux droops at low speeds by reducing the duration of zero-voltage vectors and minimizing the number of reverse-voltage vectors. In addition, the proposed strategy is efficient in reducing torque and current ripples while operating at low motor speeds. Furthermore, a significant reduction in the switching frequency is obtained. The effectiveness of the proposed strategy is confirmed by simulation and experimental results.
机译:直接转矩控制(DTC)由于在低电动机速度下具有较长的零电压矢量而导致磁通下降。先前的研究通过在转矩滞后带(THBs)中引起转矩过冲而施加正向和反向有功矢量的连续切换,从而能够实现磁通调节。这导致开关频率的过度增加以及更大的转矩和电流波动,从而降低了驱动效率。本文提出了一种改进的磁通调节方法,用于在低转子速度范围内发生磁通下垂时,使用单个THB的经典DTC。所提出的方法可以通过减少零电压矢量的持续时间并最小化反向电压矢量的数量来保护DTC在低速时不受磁通下降的影响。另外,所提出的策略在以低电动机速度运行时可有效减少转矩和电流波动。此外,获得了开关频率的显着降低。仿真和实验结果证实了所提策略的有效性。

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