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Simulation and Experiment of Sensorless Direct Torque Control of Hybrid Stepping Motor Based on DSP

机译:基于DSP的混合式步进电动机无传感器直接转矩控制的仿真与实验。

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摘要

In this paper, direct torque control (DTC) of hybrid stepping motor was investigated. Because of the structural characteristics, stepping motor is usually used for open-looped control. But, only the average torque of stepping motor is controlled by traditional control strategy, which causes intense ripple of torque and speed. Therefore, the torque must be controlled instantaneously to improve the performance of stepping motor. At first, open-looped control of stepping motor is analyzed. In order to get excellent performance, the curves of acceleration and deceleration of stepping motor must be calculated beforehand. Secondly, DTC of AC motor is introduced into the control of hybrid stepping motor. The effects of stator voltage space vectors on stator flux linkage and torque are also analyzed in details. Finally, a sensorless direct torque control system of hybrid stepping motor based on DSP-TMS320F240 is built up. The simulations and experiments validated the feasibility of the proposed system.
机译:本文研究了混合式步进电机的直接转矩控制(DTC)。由于结构特点,步进电机通常用于开环控制。但是,传统控制策略仅控制步进电机的平均转矩,这会引起转矩和速度的剧烈波动。因此,必须立即控制转矩以改善步进电机的性能。首先,分析了步进电机的开环控制。为了获得出色的性能,必须预先计算步进电机的加减速曲线。其次,将交流电动机的故障诊断代码引入混合式步进电动机的控制中。还详细分析了定子电压空间矢量对定子磁链和转矩的影响。最后,建立了基于DSP-TMS320F240的混合式步进电机无传感器直接转矩控制系统。仿真和实验验证了该系统的可行性。

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