Title :
Dynamic Petri Fuzzy Cerebellar Model Articulation Controller Design for a Magnetic Levitation System and a Two-Axis Linear Piezoelectric Ceramic Motor Drive System
Author :
Chih-Min Lin ; Hsin-Yi Li
Author_Institution :
Dept. of Electr. EngineeringInnovation, Yuan Ze Univ., Taoyuan, Taiwan
Abstract :
This brief aims to propose a more efficient control algorithm for a magnetic levitation system (MLS) and a two-axis linear piezoelectric ceramic motor (LPCM) drive system. A dynamic Petri fuzzy cerebellar (DPFC) model articulation controller is developed to allow control of the position of the metallic sphere of an MLS and the trajectory tracking of a two-axis LPCM drive system. In the DPFC, the concept of a Petri net and a fuzzy frame are incorporated into a cerebellar model articulation controller (CMAC), which alleviates the computational burden that accompanies the learning of parameters and enhances the fuzzy reasoning inference of CMACs. The supervised gradient-descent method is used to develop the online-training algorithm for the DPFC. To guarantee the convergence of trajectory tracking errors, analytical methods that use a discrete-type Lyapunov function are proposed for the DPFC. The experimental results demonstrate the effectiveness of the proposed DPFC for different experimental systems.
Keywords :
Lyapunov methods; Petri nets; control system synthesis; discrete systems; fuzzy set theory; magnetic levitation; motor drives; neurocontrollers; piezoelectric motors; trajectory control; DPFC model articulation controller; LPCM drive system; MLS; Petri net concept; control algorithm; discrete-type Lyapunov function; dynamic Petri fuzzy cerebellar model articulation controller design; fuzzy frame concept; fuzzy reasoning inference; magnetic levitation system; position control; supervised gradient-descent method; trajectory tracking; two-axis linear piezoelectric ceramic motor drive system; Aerospace electronics; Computational modeling; Control systems; Convergence; Fuzzy control; Fuzzy neural networks; Magnetic levitation; Cerebellar model articulation controller (CMAC); dynamic Petri net (PN); fuzzy system; gradient-descent method; magnetic levitation system (MLS); two-axis linear piezoelectric ceramic motor (LPCM) drive system; two-axis linear piezoelectric ceramic motor (LPCM) drive system.;
Journal_Title :
Control Systems Technology, IEEE Transactions on
DOI :
10.1109/TCST.2014.2325897