Application of ADRC technology in electrohydraulic force servo system
-
摘要: 针对无头轧制系统钢坯闪光对焊中顶锻力伺服特性要求,提出了基于自抗扰控制技术及力同步误差反馈校正的复合控制策略.为了更准确地体现所研究电液力伺服系统的非线性、参数时变性以及执行机构的耦合特性,采用AMESim平台进行了系统建模.针对顶锻力伺服的快速大力值加载特性、顶锻过程的变刚度特性、双对接液压缸同步均载要求以及更好地消除系统的其他干扰,设计了基于自抗扰控制技术和比例积分同步误差反馈校正的复合控制策略,以提高系统的鲁棒性、力伺服的快速响应性以及双对接液压缸的同步性能.通过仿真研究,在局部冲击干扰的条件下,仿真结果证实了所提控制策略的有效性和可行性.Abstract: To meet the performance requirements of electrohydraulic force servo system for the upset process of billet flash butt welding of the ending welding rolling, composite control strategy based on active disturbance rejection control (ADRC) technology and force synchronization errors feedback correction strategy were presented. Considering the nonlinear of the system, time-varying parameters and coupling arising from mechanical structure, the system model was built in AMESim. The system has the challenges entailed by the conditions such as the upset force to be loaded with big force value, the variable rigidity of the loading system, the synchrony requirement while the two cylinders loading with even load on each cylinder. The interference of hydraulic servo system should be eliminated. Aiming at to furnish a robust, quick response, and synchronous loading system, composite control strategy based on ADRC technology and proportional integral synchronization errors feedback correction was proposed. The effectiveness and feasibility of the composite control strategy are verified through simulation research of a quick and big load servo with impulse.
-
[1] 卢宁.钢坯闪光焊接液压系统关键技术研究.北京:北京航空航天大学自动化科学与电气工程学院,2006
Lu Ning.Research of crucial technology of hydraulic system in steel billet flash butt welding.Beijing:School of Automation Science and Electrical Engineering,Beijing University of Aeronautics and Astronautics,2006(in Chinese)[2] 中国机械工程学会焊接学会,电阻焊(Ⅲ)专业委员会.电阻焊理论与实践[M].北京:机械工业出版社,1994:70-89
Institute of Welding of Chinese Mechanical Engineering Society,Professional Committee(Ⅲ) of Resistance Welding.Resistance welding theory and practice[M].Beijing:China Machine Press,1994:70-89(in Chinese)[3] Lestani M,Savador G.Technology and benefits of the endless welding rolling process for the production of hot-rolled long products [J].Stahl and Eisen,2002,122(3):67-73 [4] Terry H A.EBROS-endless bar rolling system[J].AISE Steel Technology,2003,80(2):41-46 [5] 吴迪,赵宪明,宋玉明.闪光对焊无头轧制顶锻压力对20MnSi钢组织性能的影响[J].钢铁,2002,37(6):20-24
Wu Di,Zhao Xianming,Song Yuming.Influence of upsetting force during flash welding on the structure and mechanical properties of 20MnSi steel for endless rolling [J].Iron and Steel,2002,37(6):20-24(in Chinese)[6] 卢宁,付永领,孙新学.一种消除钢坯闪光焊同步误差的控制方法[J].北京航空航天大学学报,2007,33(8):936-939
Lu Ning,Fu Yongling,Sun Xinxue.Method of eliminating synchronism control error in flash butt welding of bill [J].Journal of Beijing University of Aeronautics and Astronautics,2007, 33(8) :936-939(in Chinese)[7] 韩京清.自抗扰控制技术——估计补偿不确定因素的控制技术[M].北京:国防工业出版社,2008
Han Jingqing.Active disturbance rejection control technology:the technology for estimating and compensating the uncertainties [M].Beijing:National Defense Industry Press,2008(in Chinese)[8] Wu Dan,Zhao Tong,Chen Ken,et al.Application of active disturbance rejection control to variable spindle speed noncircular turning process [J].International Journal of Machine Tools and Manufacture,2009,49(4):419-423 [9] Zheng Qing,Dong Lili,Lee Daehui,et al.Active disturbance rejection control for MEMS gyroscopes [J].IEEE Transactions on Control Systems Technology,2009,17(6):1432-1438 [10] 关景泰.机电液控制技术[M].上海:同济大学出版社,2003:182-186
Guan Jingtai.Electrical and mechanical hydraulic control technology[M].Shanghai:Tongji University Press,2003:182-186 (in Chinese)
点击查看大图
计量
- 文章访问数: 1642
- HTML全文浏览量: 112
- PDF下载量: 686
- 被引次数: 0