电工技术学报  2021, Vol. 36 Issue (5): 935-943    DOI: 10.19595/j.cnki.1000-6753.tces.201065
“直线电机设计、控制及系统集成”专题 |
基于生物智能环状耦合的嵌入式永磁同步直线电机高精度位置协同控制研究
王璨1, 李国冲1, 杨桂林2, 王冲冲2, 潘剑飞1
1.深圳大学机电与控制工程学院 深圳 518060;
2.中国科学院宁波材料技术与工程研究所 宁波 315201
Research on Position Cooperative Control of High-Precision Embedded Permanent Magnet Synchronous Linear Motor Based on Biological Intelligence Loop Coupling
Wang Can1, Li Guochong1, Yang Guilin2, Wang Chongchong2, Pan Jianfei1
1. College of Mechatronics and Control Engineering Shenzhen University Shenzhen 518060 China;
2. Ningbo Institute of Materials Technology and Engineering Chinese Academy of Sciences Ningbo 315201 China
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摘要 基于永磁同步直线电机的多电机协同定位驱动系统,由于高推力密度比、响应快等特点,被广泛应用于各种高精密工业加工制造领域。针对集成永磁同步直线电机(IPMSLM)系统,借鉴生物领域激素调节原理,结合生物智能控制(BIC)与滑模变结构(SMVS)控制算法,提高IPMSLM系统中单电机的定位精度与鲁棒性。基于Lyapunov稳定性原理,设计环状耦合位置协同控制器,在确保全局稳定的同时,进一步提高IPMSLM整个系统的协同定位精度。在RT-Lab半实物仿真平台进行空载和变负载实验,结果表明,所设计的BIC-SMVS位置控制算法,使得单电机的定位精度达到±4µm;基于Lyapunov的环状耦合协同控制算法,可实现系统协同误差控制精度在±6µm以内。
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王璨
李国冲
杨桂林
王冲冲
潘剑飞
关键词 永磁同步直线电机滑模变结构生物智能算法环状耦合位置控制    
Abstract:The multi-motor coordinated positioning drive system based on permanent magnet synchronous linear motors is widely used in various high-precision industrial processing and manufacturing fields due to its high thrust density ratio and fast response. This article aims at the integrated permanent magnet synchronous linear motor (IPMSLM) system, draws on the principle of hormone regulation in the biological field, and combines biological intelligent control (BIC) with sliding mode variable structure (SMVS). The control algorithm improves the positioning accuracy and robustness of a single motor in the IPMSLM system. Based on the Lyapunov stability principle, the loop-coupled position cooperative controller is designed to further improve the coordinated positioning accuracy of the entire IPMSLM system while ensuring global stability. Through no-load and variable-load experiments on the RT-Lab semi-physical simulation platform, experimental results show that the position control strategy proposed in this paper can not only achieve high-precision tracking control of a single motor (±4µm), but also achieve a high-precision coordinated control of multiple motors (±6µm).
Key wordsPermanent magnet synchronous linear motor    sliding mode variable structure    biological intelligence algorithm    loop coupling    position control   
收稿日期: 2020-08-30     
PACS: TM351  
基金资助:国家自然科学基金重点项目(U1913214)、国家自然科学基金青年项目(52007121)、广东省自然科学基金面上项目(2019A1515012165)、深圳市科技计划基础研究面上项目(JCYJ20190808113009469)和台北科技大学与深圳大学学术合作专题研究计划项目(2019002)资助
通讯作者: 潘剑飞,男,1978年生,博士,研究方向为直线电机设计及系统控制。E-mail:pjf@szu.edu.cn   
作者简介: 王璨,女,1989年生,助理教授,研究方向为永磁同步电机伺服系统和机械共振抑制。E-mail:can.wang@szu.edu.cn
引用本文:   
王璨, 李国冲, 杨桂林, 王冲冲, 潘剑飞. 基于生物智能环状耦合的嵌入式永磁同步直线电机高精度位置协同控制研究[J]. 电工技术学报, 2021, 36(5): 935-943. Wang Can, Li Guochong, Yang Guilin, Wang Chongchong, Pan Jianfei. Research on Position Cooperative Control of High-Precision Embedded Permanent Magnet Synchronous Linear Motor Based on Biological Intelligence Loop Coupling. Transactions of China Electrotechnical Society, 2021, 36(5): 935-943.
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