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首页> 外文期刊>IEE Proceedings. Part B, Electric Power Applications >Strategy for the instantaneous torque control of permanent-magnet brushless DC drives
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Strategy for the instantaneous torque control of permanent-magnet brushless DC drives

机译:永磁无刷直流变频器的瞬时转矩控制策略

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摘要

The paper describes an instantaneous torque control for a permanent magnet motor driven in a brushless direct current drive configuration. The motor has high torque capabilities, which makes it suitable for direct drive applications, but unfortunately it suffers from torque pulsations when controlled by a conventional sinusoidal current controller. Instantaneous torque control is aimed at eliminating such torque pulsation, thereby improving speed and position control. The approach adopted is to design an instantaneous torque control algorithm based on a variable structure strategy in the dq rotating reference frame. The switching commands for the inverter are generated by the digital controller directly. The required instantaneous torque feedback information is estimated from knowledge of the motor parameters and measurements of instantaneous currents and rotor position. The performance of the proposed controller design and torque feedback technique are investigated in computer simulation studies and experimental implementations. Experimental results for drive applications using instantaneous torque control and conventional sinusoidal current control are evaluated and compared.
机译:该论文描述了在无刷直流驱动配置中驱动的永磁电动机的瞬时转矩控制。电动机具有高转矩能力,使其适合直接驱动应用,但不幸的是,当由常规正弦电流控制器控制时,电动机会遭受转矩脉动。瞬时转矩控制旨在消除这种转矩脉动,从而改善速度和位置控制。所采用的方法是在dq旋转参考系中设计基于可变结构策略的瞬时转矩控制算法。变频器的切换命令直接由数字控制器生成。所需的瞬时转矩反馈信息是根据电动机参数知识以及瞬时电流和转子位置的测量值估算出来的。拟议的控制器设计和转矩反馈技术的性能在计算机仿真研究和实验实现中得到了研究。评估并比较了使用瞬时转矩控制和常规正弦电流控制的驱动应用的实验结果。

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