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基于迭代滑模和扰动观测器的永磁同步电机转速控制
引用本文:王栋栋,刘旭东.基于迭代滑模和扰动观测器的永磁同步电机转速控制[J].电机与控制应用,2022,49(6):1-8.
作者姓名:王栋栋  刘旭东
作者单位:1.青岛大学 自动化学院,山东 青岛〓266071;2.山东省工业控制技术重点实验室,山东 青岛〓266071
基金项目:国家自然科学基金项目(52037005);中国博士后科学基金项目(2018M632622);山东省高校青年创新科技支持计划项目(2019KJN033)
摘    要:为了提高永磁同步电机(PMSM)控制系统的转速跟踪精度和鲁棒性,抑制其周期性转矩脉动,提出了一种基于积分滑模控制和迭代学习方法的PMSM单环控制策略。控制器采用单环滑模控制策略替代了传统的转速-电流级联控制,简化了控制系统的结构,提高了系统动态响应,通过引入迭代学习控制有效抑制了因电流谐波而导致的转矩脉动,提高了转速稳态控制精度。此外,针对系统存在的外部负载扰动、模型和参数不确定性等,设计了双重扰动观测器估计系统扰动量,提高了系统的鲁棒性。最后,针对所提复合控制策略进行了试验验证。试验结果表明,所提出的控制方法具有良好的动态性能、抗干扰能力和稳态控制精度。

关 键 词:永磁同步电机    迭代学习控制    滑模控制    双重扰动观测器    转速控制
收稿时间:2022/3/29 0:00:00
修稿时间:2022/4/29 0:00:00

Speed Control of Permanent Magnet Synchronous Motor Based on Iterative Sliding Mode and Disturbance Observer
Affiliation:1.School of Automation, Qingdao University, Qingdao 266071, China;2.Shandong Key Laboratory of Industrial Control Technology, Qingdao 266071, China
Abstract:In order to improve the speed tracking accuracy and robustness of permanent magnet synchronous motor (PMSM) control system and suppress periodic torque ripple, a single-loop control strategy of PMSM based on integral sliding mode control and iterative learning method is proposed. The single-loop sliding mode control strategy is adopted in the controller to replace the traditional rotational speed and current cascade control, so that the control system structure is simplified and the dynamic response of the system is improved. The iterative learning control is introduced to effectively suppress the torque ripple caused by current harmonics and improve the steady-state control accuracy of rotational speed. In addition, aiming at the external load disturbances and model and parameter uncertainties of the system, a dual disturbance observer is designed to estimate the system disturbances. As a result, the robustness of the system is improved. Finally, the experimental verification of the proposed composite control strategy is completed. Experimental results show that the proposed control method has good dynamic performance, anti-interference ability and steady-state control accuracy.
Keywords:permanent magnet synchronous motor (PMSM)  iterative learning control  sliding mode control (SMC)  dual disturbance observer  speed control
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