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基于动态矩阵的永磁同步直线电机速度控制
引用本文:薛增涛,史雁鹏,王蕾永,李争,王群京.基于动态矩阵的永磁同步直线电机速度控制[J].河北科技大学学报,2019,40(2):145-151.
作者姓名:薛增涛  史雁鹏  王蕾永  李争  王群京
作者单位:河北科技大学电气工程学院,河北石家庄,050018;安徽大学高节能电机及控制技术国家地方联合工程实验室,安徽合肥,230601
基金项目:国家自然科学基金(51577048,51637001,51877070); 河北省自然科学基金(E2018208155); 河北省留学人员科技活动项目择优资助项目(C2015003044); 河北省高等学校科学技术研究重点项目(ZD2018228); 高节能电机及控制技术国家地方联合工程实验室开放课题基金资助项目(KFKT201804); 河北省研究生创新资助项目(CXZZSS2018085)
摘    要:为了改善直线电机的动态响应性能,提高电机控制系统的鲁棒性,使电机稳定运行,基于预测控制理论,设计了适用于直线电机速度环控制的动态矩阵控制器,将传统的直线电机三闭环控制系统中的速度环PID控制器替换为动态矩阵控制器,并分别搭建基于PID速度控制器和动态矩阵速度控制器的永磁同步直线电机三闭环仿真模型,在此基础上给控制系统施加阶跃信号,并进行突加负载和突减负载的仿真,将2种控制器控制下的系统响应结果进行对比。仿真结果表明,当速度环采用动态矩阵控制后电机的响应速度更快,超调更小,使电机速度更快达到稳定。改进后的速度环控制器提高了直线电机控制系统的鲁棒性,改善了直线电机的动态响应性能,提高了控制系统的抗扰动能力,有利于电机在负载变化较大的情况下运行。

关 键 词:自动控制理论  直线电机  预测控制  动态矩阵控制  速度环
收稿时间:2018/12/26 0:00:00
修稿时间:2019/1/25 0:00:00

Speed control of PM synchronous linear motor based on dynamic matrix
XUE Zengtao,SHI Yanpeng,WANG Leiyong,LI Zheng and WANG Qunjing.Speed control of PM synchronous linear motor based on dynamic matrix[J].Journal of Hebei University of Science and Technology,2019,40(2):145-151.
Authors:XUE Zengtao  SHI Yanpeng  WANG Leiyong  LI Zheng and WANG Qunjing
Abstract:In order to improve the dynamic response performance of the linear motor, improve the robustness of the motor control system, and make the motor run stably, based on the theory of predictive control, a dynamic matrix controller suitable for speed loop control of linear motor is designed. The PID controller of speed loop in the traditional linear motor control system is replaced by dynamic matrix controller. The simulation models of the permanent magnet synchronous linear motors with PID controller and dynamic matrix speed controller are built. The step signal is applied to the control system, and the simulation under sudden load and sudden load reduction is completed. The response results of the systems with the two controllers are compared. The simulation results show that when the speed loop is controlled by dynamic matrix, the response speed of the motor is faster, the overshoot is smaller, and the motor speed is stable. The improved speed loop controller improves the robustness of the linear motor control system, the dynamic performance of the linear motor, and the anti-disturbance capability of the control system, which facilitates the operation of the motor under great load change conditions.
Keywords:automatic control theory  linear motor  predictive control  dynamic matrix control  velocity loop
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