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Microstepping with nonlinear torque modulation for position tracking control in permanent magnet stepper motors

机译:带有非线性转矩调制的微步控制,用于永磁步进电机的位置跟踪控制

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A new approach to position control based on microstepping with nonlinear torque modulation in permanent magnet stepper motors is explored in this paper. The proposed method consists of nonlinear torque modulation, a commutation scheme, and a nonlinear current tracking controller. Previous microstepping control methods that guarantee the desired currents have relatively large position tracking errors due to their mechanical dynamics. A method of nonlinear torque modulation is designed to solve this problem. We propose a commutation scheme that is equivalent to microstepping in which the desired currents have time-varying amplitudes with π over 2 electrical phase advance. The nonlinear controller in the electrical dynamics is developed to guarantee the desired current derived by the commutation scheme. The proposed control method is in the form of field oriented control (FOC) even though direct quadrature transformation so that the zero direct current is kept to maximize the torque. Thus, the efficiency of the energy consumption of the proposed method is better those that of previous microstepping control methods for guarantees of the desired currents. The performance of the proposed position control method was validated through simulations.
机译:本文探讨了一种基于微步控制和非线性转矩调制的永磁步进电机位置控制新方法。所提出的方法包括非线性转矩调制,换向方案和非线性电流跟踪控制器。保证所需电流的先前的微步控制方法由于其机械动力学而具有相对较大的位置跟踪误差。设计了一种非线性转矩调制方法来解决该问题。我们提出一种等效于微步进的换向方案,其中所需电流在2个电相位超前具有随π的时变幅度。开发了电气动力学中的非线性控制器,以确保通过换向方案获得所需的电流。即使采用直接正交变换,所提出的控制方法仍采用磁场定向控制(FOC)的形式,以便保持零直流电以最大化转矩。因此,所提出的方法的能量消耗效率比先前的微步控制方法的能量效率要好,以保证期望的电流。仿真结果验证了所提位置控制方法的性能。

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