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首页> 外文期刊>Mechatronics: The Science of Intelligent Machines >Simplified torque modulated microstepping for position control of permanent magnet stepper motors
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Simplified torque modulated microstepping for position control of permanent magnet stepper motors

机译:用于永磁步进电机位置控制的简化扭矩调制微步

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摘要

In previous methods designed based on field oriented (and/or weakening) control, high performance of current control is required for position control of permanent magnet (PM) stepper motors. This paper proposes a simplified torque modulated microstepping (STMMS) based on singular perturbation theory for position control of the PM stepper motors. Since a two phase frame PM stepper motor model involves slow and fast dynamics, singular perturbation theory is applied to improve the transient response and to reduce the ripple. The torque modulated microstepping method is applied with a simplified current tracking control law obtained from singular perturbed system analysis. Using applied conditions and stability proofs, we find that the proposed control design procedure is simplified. This eliminates the high-bandwidth control efforts for the current tracking required in the previous methods. Furthermore, the STMMS does not use current feedback for the current tracking. It is shown that high performance in the current tracking does not necessarily entail high performance in the position tracking. The proposed method was validated by simulation and experimental results. It is observed that the STMMS not only improved transient response but also reduced ripple in position control over the previous method. Furthermore, the STMMS used the input voltages less than the previous method does. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在基于磁场定向(和/或弱化)控制设计的先前方法中,永磁体(PM)步进电机的位置控制需要高性能的电流控制。本文提出了一种基于奇异摄动理论的简化转矩调制微步进(STMMS),用于永磁步进电机的位置控制。由于两相框架PM步进电机模型涉及慢速和快速动力学,因此采用奇异摄动理论来改善瞬态响应并减小纹波。转矩调制微步进方法与从奇异摄动系统分析获得的简化电流跟踪控制律一起应用。通过使用条件和稳定性证明,我们发现所提出的控制设计程序得到了简化。这消除了先前方法中需要的用于当前跟踪的高带宽控制工作。此外,STMMS不会将电流反馈用于电流跟踪。已经表明,电流跟踪中的高性能不一定意味着位置跟踪中的高性能。仿真和实验结果验证了该方法的有效性。可以看出,与以前的方法相比,STMMS不仅改善了瞬态响应,而且减少了位置控制中的波动。此外,STMMS使用的输入电压小于以前的方法。 (C)2016 Elsevier Ltd.保留所有权利。

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