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永磁同步电机调速系统二阶滑模控制器的设计
引用本文:黄鹤松,王芮,宋承林,张鸿波. 永磁同步电机调速系统二阶滑模控制器的设计[J]. 微电机, 2021, 0(2): 55-60+66. DOI: 10.15934/j.cnki.micromotors.2020
作者姓名:黄鹤松  王芮  宋承林  张鸿波
作者单位:(1.山东科技大学 电气与自动化工程学院,山东 青岛 266590;2.青岛中加特电气股份有限公司,山东 青岛 266000)
摘    要:在表贴式永磁同步电机调速系统中,针对经典PI控制中超调大、鲁棒性差、易受负载扰动等问题,设计一种基于二阶滑模算法的控制器,采用积分型滑模面,通过李雅普诺夫函数证明了其在有限时间内收敛,将其应用于转速控制环节,具有对内部参数变化不敏感的优点;并针对负载扰动问题,设计一种负载转矩观测器,将负载转矩观测值补偿到电流中,减小了负载扰动对系统的影响。仿真和实验结果表明,该控制方法能改进永磁同步电机的调速性能,响应速度快且无超调,系统鲁棒性强。

关 键 词:永磁同步电机  二阶滑模控制  负载转矩观测器  负载扰动

Design of Second Order Sliding Mode Controller Based on PMSM Speed Regulation System
HUANG Hesong,WANG Rui,SONG Chenlin,ZHANG Hongbo. Design of Second Order Sliding Mode Controller Based on PMSM Speed Regulation System[J]. Micromotors, 2021, 0(2): 55-60+66. DOI: 10.15934/j.cnki.micromotors.2020
Authors:HUANG Hesong  WANG Rui  SONG Chenlin  ZHANG Hongbo
Affiliation:(1.College of Electrical Engineering and Automation,Shandong University of science and Technology,Qingdao,266590,Shandong,China 2.Qingdao CCS Electric Co.Ltd,Qingdao,266000,Shandong,China)
Abstract:In the surface-mounted permanent magnet synchronous motor speed control system,the problems of large overshoot,poor robustness and susceptibility to load disturbance in classic PI control are addressed.A controller based on the second-order sliding mode algorithm was designed.The integral sliding mode surface was adopted.The convergence in finite time was proved by Lyapunov function,and it was applied to the speed control.It is insensitive to the change of internal parameters aiming at the problem of load disturbance,a load torque observer was designed to compensate the observed value of the load torque into the current to reduce the influence of the load disturbance on the system.Simulation and experimental results show that the control method improves the speed regulation system of the permanent magnet synchronous motor significantly,can respond quickly to a given speed without overshoot,and it has strong robustness.
Keywords:permanent magnet synchronous motor  second-order sliding mode  load torque observer  load disturbance
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