Double Position Loop Design of AC Servo Drive System

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Abstract:

The loop controller of double position fully closed makes the AC servo drive system acquire a very high position accuracy and speed following which is hard to be achieved for time-varying parameters, load disturbance, AC motors and severely nonlinear controlled objects. For the system, the dynamic nature can be ensured by the inner position loop adopting PI regulation of half closed loop structure, while the stability and the immunity can be achieved by closed loop structures with the rings outside adopting dual-mode fuzzy control. This article analyzes the cause of positioning errors for servo motor and semi-closed loop structure. The article also explains how to design a two position closed-loop servo system based on fuzzy control by adopting the AC servo motor drive, the motor shaft back-end incremental photoelectric encoder to form the inner position loop and using the motion control card, the inner ring of servo system and the work platform of grating ruler to make up the outer position loop. Based on double position loop composed of three-dimensional laser processing gear, the accuracy of the three-axis linkage workbench position control and the speed following can be ensured, thus meeting the requirement of the laser subsurface engraving machine for high speed and high precision motion.

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486-490

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June 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Gong C, Yuan J, Ni j. Nongeometric error identification and compensation for robotic system by inverse calibration[J]. International Journal of Machine Tools and Manufacture, Volume40, Number14, 2000(19): 2119-2137.

DOI: 10.1016/s0890-6955(00)00023-7

Google Scholar

[2] Hexu Sun. AC variable frequency drive stepper systems [m]. Mechanical industry publishing house, (1999).

Google Scholar

[3] Xu,X. and Mao,J. A STEP-Compliant Collaborative Product Development System, processing of the 33rd International Conference on Computers and Industrial Engineering, 2004, (2): 1-7.

Google Scholar

[4] Se-Han Lee, Jae-Bok Song, et al. Controller Design for a Stewart Platform using Small Workspace Characteristics. Proceedings of the 2001 IEEE/RSJ International Conference on Intelligent Robots and Systems, 2001: 2184-2189.

DOI: 10.1109/iros.2001.976394

Google Scholar

[5] Weiguo Zhang, Xiangzhong Yang. Fuzzy control theory and application [m]. Northwestern University Press, (1999).

Google Scholar

[6] Sprenger B. Design of a high speed and high precision 3 DOF linear direct drives. Proceedings of the IEEE/ASME International Conference on Advanced Mechatronics, 1997, 63.

DOI: 10.1109/aim.1997.652927

Google Scholar