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Direct Torque Control of Brushless DC Motor Drives with Improved Reliability

机译:具有提高可靠性的无刷直流电机驱动的直接扭矩控制

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Currently, road vehicles are more and more equipped by PM synchronous motors. Of particular interest are brushless DC (BLDC) motors with their low resolution encoder make it feasible their integration in a large scale industry such as the automotive one. Within this trend, the paper deals with the synthesis and implementation of a new DTC strategy dedicated to the control of BLDC motor drives. Compared to the most recent and high-performance DTC strategy, the proposed one offers an improved reliability thanks to the achievement of a balanced switching frequencies of the inverter upper and lower IGBTs, on one hand, and the reduction of the average value of the motor common mode voltage, on the other hand. Furthermore, the torque ripple is significantly damped during sequence-to-sequence commutations using a three-level hysteresis torque controller. An experimentally-based comparative study between the most recent and high-performance DTC strategy and the introduced one clearly highlights the potentialities exhibited by the latter.
机译:目前,PM同步电机的道路车辆越来越装备。特别感兴趣的是无刷DC(BLDC)电机,其低分辨率编码器使得它们在大型行业中的集成在大型行业之类的情况下使其成为汽车之所可行。在这一趋势中,本文涉及致力于控制BLDC电机驱动器的新型DTC策略的综合和实施。与最新和高性能的DTC策略相比,所提出的策略提供了改进的可靠性,因为通过一方面的逆变器上部和下部IGBT的平衡开关频率和降低电动机的平均值的降低,提供了更高的可靠性另一方面,共模电压。此外,使用三级滞后扭矩控制器在序列到序列换向期间扭矩脉动显着阻尼。最近和高性能的DTC策略与介绍的基于实验的比较研究显然强调了后者展示的潜力。

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