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Improved Iterative Learning Control Strategy for Surface-Mounted Permanent Magnet Synchronous Motor Drives

机译:用于表面安装永磁同步电动机驱动器的改进迭代学习控制策略

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摘要

In this article, an improved iterative learning control (ILC), which significantly enhances the speed tracking performance in the transient and steady state for a surface-mounted permanent magnet synchronous motor (SPMSM) drive, is proposed. The proposed ILC encapsulates two control terms: the feedback linearization control terms force the speed error to approach zero, and the iterative learning control terms (ILCTs) improve the performance of the control inputs based on the stored data such as previous speed error and previous control input. Unlike the conventional feedback linearization control (FLC), the proposed ILC does not require the exact information of the SPMSM parameters, significantly rejects the periodic and nonperiodic disturbances, and efficiently provides an enhanced speed tracking performance owing to the included ILCTs. Besides, its stability is proven by showing that the speed tracking error asymptotically goes to zero. In comparative studies, the proposed method offers the better transient performance (e.g., faster transient response and smaller overshoot) and steady-state performance (i.e., smaller steady-state error) than the conventional FLC under load and speed step changes. To prove the practicability of the proposed scheme, the proposed ILC is simulated and implemented on a MATLAB/Simulink software and a prototype SPMSM test-bed using TI TMS320F28335 digital signal processor, respectively.
机译:在本文中,提出了一种改进的迭代学习控制(ILC),其显着提高了表面上安装的永磁同步电动机(SPMSM)驱动器的瞬态和稳定状态的速度跟踪性能。所提出的ILC封装了两个控制项:反馈线性化控制术语强制速度误差接近零,并且迭代学习控制术语(ILCTS)根据存储的数据提高控制输入的性能,例如先前的速度误差和先前的控制输入。与传统的反馈线性化控制(FLC)不同,所提出的ILC不需要SPMSM参数的确切信息,显着拒绝周期性和非周期性干扰,并且有效地提供了由于所附的ILCT而提供增强的速度跟踪性能。此外,通过表明渐近的速度跟踪误差归零来证明其稳定性。在比较研究中,所提出的方法提供更好的瞬态性能(例如,更快的瞬态响应和较小的过冲)和稳态性能(即,较小的稳态误差)比传统的FLC在负载和速度变化下变化。为了证明所提出的方案的实用性,使用Ti TMS320F28335数字信号处理器分别在Matlab / Simulink软件和原型SPMSM测试床上进行模拟和实现所提出的ILC。

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