Title :
Adaptive enhanced fuzzy sliding-mode control for electrical servo drive
Author :
Wai, Rong-Jong ; Su, Kuo-Ho
Author_Institution :
Dept. of Electr. Eng., Yuan Ze Univ., Chung Li, Taiwan
fDate :
4/1/2006 12:00:00 AM
Abstract :
The design and properties of an adaptive enhanced fuzzy sliding-mode control (AEFSMC) system for an indirect field-oriented induction motor (IM) drive to track periodic commands are addressed in this study. A newly designed EFSMC system, in which a translation-width idea is embedded into the FSMC, is introduced initially. Moreover, to confront the uncertainties existed in practical applications, an adaptive tuner, which is derived in the sense of the Lyapunov stability theorem, is utilized to adjust the EFSMC parameter for further assuring robust and optimal control performance. The indirect field-oriented IM drive with the AEFSMC scheme possesses the salient advantages of simple control framework, free from chattering, stable tracking control performance, and robust to uncertainties. In addition, numerical simulation and experimental results due to periodic sinusoidal commands are provided to verify the effectiveness of the proposed control strategy, and its advantages are indicated in comparison with FSMC and EFSMC systems.
Keywords :
Lyapunov methods; adaptive control; control system synthesis; fuzzy control; induction motor drives; machine vector control; numerical analysis; optimal control; robust control; servomotors; variable structure systems; Lyapunov stability theorem; adaptive control; adaptive enhanced fuzzy sliding-mode control; adaptive tuner; control system design; electrical servo drive; field-oriented induction motor drive; numerical simulation; optimal control; robust control; tracking control; Adaptive control; Fuzzy control; Fuzzy systems; Induction motors; Programmable control; Robust control; Servomechanisms; Sliding mode control; Tuners; Uncertainty; Adaptive control; electrical servo drive; fuzzy sliding-mode control (FSMC); indirect field-oriented mechanism; induction motor (IM);
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2006.870710