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微进给工作台伺服控制技术 被引量:3

Control technology for high precision feed table
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摘要 为实现母盘刻录机中光学头的精密进给,研制了精密微进给工作台及其伺服控制系统。利用线光栅作为工作台位移检测工具,采用数字比例积分微分(PID)伺服滤波器实现位移控制。经实验方法测定,系统摩擦可以近似为Coulomb摩擦加Stribeck效应的模型。采用了基于该模型的摩擦补偿方法以消除电机死区影响。为实现精确轨迹控制,控制系统采用了零相位误差跟踪控制(ZPETC)技术。针对高增益PID、摩擦补偿和ZPETC加摩擦补偿这3种控制方法,分别进行了轨迹跟踪实验,其轨迹误差分别为±0.8、±0.6和±0.3μm。 A high precision feed table and control system were developed to drive the optical head in a disc mastering device. Linear grating and a digital proportional-integral-derivative (PID) filter were used for position measurement and servo control. The measured system friction could be modelled as Coulomb friction plus the Stribeck effect. The control system compensated for the friction to eliminate the effect of electromotor dead zone. A zero-phase error-tracking controller (ZPETC) was used to reduce the phase error. Tests of three different control strategies show that high gain PID has a tracking error of ±0.8 μm, friction compensation has a tracking error of ±0.6 μm and friction compensation plus ZPETC has a tracking error of ±0.3 μm.
出处 《清华大学学报(自然科学版)》 EI CAS CSCD 北大核心 2004年第5期657-660,共4页 Journal of Tsinghua University(Science and Technology)
基金 国家"九七三"重点基础研究项目(G19990330)
关键词 机电一体化 精密工作台 前馈控制 摩擦补偿 微进给工作台 伺服控制 母盘刻录系统 mechatronics precision table feedforward control friction compensation
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参考文献8

  • 1Jiang Y A,Clements D J,Hesketh T.Adaptive repetitive control of nonlinear systems [A].Proceedings of the 34th IEEE Conference on Decision & Control [C].New Orleans:IEEE,1995.1708-1713.
  • 2Lee J.Mechatronic Design and Control of Low-Velocity,High-Precision Positioning Systems in the Presence of Friction [D].New York:Rensselaer Polytechnic Insitute,2002.
  • 3Zhang Y,Liu G,Goldenberg A A.Friction compensation with estimated velocity [A].Proceedings IEEE International Conference on Robotics and Automation [C].Washington:Institute of Electrical and Electronics Engineers Inc,2002.2650-2655.
  • 4Ro P I,Shim W,Jeong S.Robust friction compensation for submicrometer positioning and tracking for a ball-screw-driven slide system [J].Precision Engineering,2000,24(2):160-173.
  • 5Kayihan A,Doyle F J III.Friction compensation for a process control valve [J].Control Engineering Practice,2000,8(7):799-812.
  • 6Tomizuka M.On the design of digital tracking controllers [J].ASME Journal Dynamic System Measurement and Control(50th Anniversary Issue),1993,115(2B):412-418.
  • 7Lee S L,Tomizuka M.Robust motion controller design for high-accuracy positioning systems [J].IEEE Trans on Indu Elect,1996,43(1):48-55.
  • 8Armstrong H B,Dupont P,Canudas W C.A survey of models,analysis tools and compensation methods for the control of machines with friction [J].Automatica,1994,30(7):1083-1138.

同被引文献20

  • 1许黎明,胡德金,邓琦林,赵晓明.压电陶瓷微位移驱动技术研究[J].机械工程学报,2002,38(z1):43-47. 被引量:13
  • 2潘峰,薛定宇,徐心和.基于dSPACE半实物仿真技术的伺服控制研究与应用[J].系统仿真学报,2004,16(5):936-939. 被引量:72
  • 3杨智春,李思政,舒忠平,白存儒.一种柔性微型扑翼设计及其气动力特性的试验研究[J].机械科学与技术,2006,25(1):12-14. 被引量:10
  • 4段瑞玲,李玉和,李庆祥.精密伺服工作台的模糊-PI复合控制的设计与仿真[J].计算机测量与控制,2006,14(6):751-753. 被引量:6
  • 5Ang K. H. , Chong G. , Li Y. PID control system analysis, design, and technology [ J ]. IEEE Transactions on Control Systems Technology, 2005,13 (4) :559 - 576.
  • 6Seraji H. A new class of nonlinear PID controllers with robotic applications [ J ]. Journal of Robotic System, 1998,15 ( 3 ) : 161 - 181.
  • 7Blanchett TP, Kember GC, Dubay R. PID gain scheduling using fuzzy logic [ J ]. ISA Transactions, 2000, 39 ( 3 ) : 317 - 325(9).
  • 8Cheng GY,Peng KM. Robust composite nonlinear feedback control with application to a servo positioning system [ J ]. IEEE Transactions on Industrial Electronics, 2007,54(2):1132-1140.
  • 9Liu ZZ, Luo FL, Rashid MH. Robust high speed and high precision linear motor direct-drive XY-table motion system[ J]. lEE Proceedings-Control Theory and Applications, 2004,151 (2) :166 - 173.
  • 10Jang JO. Deadzone compensation of an XY-positioning table using fuzzy logic[ J]. IEEE Transactions on Industrial Electronics. , 2005,52(6) :1696 - 1701.

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