DocumentCode
2666762
Title
Sliding Mode Robust Tracking Control Based on Learning Feedforward Compensation for High Precision Linear Servo System
Author
Guoxin, Zhu ; Qingding, Guo ; Ximei, Zhao
Author_Institution
Sch. of Electr. Eng., Shenyang Univ. of Technol.
Volume
3
fYear
2006
fDate
14-16 Aug. 2006
Firstpage
1
Lastpage
4
Abstract
The permanent magnet linear servo system has some advantages of high speed, high response and direct drive, but the servo performance is influenced by the load disturbances, end-effects, nonlinear friction and the parameters variations. In order to eliminate the influences of the above-mentioned uncertain factors on the basis of ensuring better tracking performance, a robust tracking control strategy combining variable structure control (VSC) with B spline nervous network (BSNN) is presented in this paper. The variable structure control has advantages of the fast response and the invariability of the uncertain factors, but its chattering phenomenon will influence the stationarity of the linear servo system and tracking precision. To reduce the "chattering" input, a BSNN is adopted to eliminate the above-mentioned uncertain factors, thus the steady state accuracy of the system is enhanced further. The simulation results show that the solution not only has stronger robustness to the uncertainty of the linear servo system, but also has better tracking performance
Keywords
feedforward; linear synchronous motors; machine control; permanent magnet motors; servomotors; variable structure systems; B spline nervous network; BSNN; VSC; chattering phenomenon; learning feedforward compensation; linear synchronous motor; load disturbances; nonlinear friction; permanent magnet linear servo system; sliding mode robust tracking control; variable structure control; Control systems; Drives; Friction; Permanent magnets; Robust control; Robustness; Servomechanisms; Sliding mode control; Spline; Steady-state; B spline nervous network; Permanent magnet linear synchronous motor; chattering; end-effects; robust tracking; slide mode variable structure control;
fLanguage
English
Publisher
ieee
Conference_Titel
Power Electronics and Motion Control Conference, 2006. IPEMC 2006. CES/IEEE 5th International
Conference_Location
Shanghai
Print_ISBN
1-4244-0448-7
Type
conf
DOI
10.1109/IPEMC.2006.4778311
Filename
4778311
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