DocumentCode
59887
Title
Approximation-Based Discrete-Time Adaptive Position Tracking Control for Interior Permanent Magnet Synchronous Motors
Author
Jinpeng Yu ; Peng Shi ; Haisheng Yu ; Bing Chen ; Chong Lin
Author_Institution
Sch. of Autom. Eng., Qingdao Univ., Qingdao, China
Volume
45
Issue
7
fYear
2015
fDate
Jul-15
Firstpage
1363
Lastpage
1371
Abstract
This paper considers the problem of discrete-time adaptive position tracking control for a interior permanent magnet synchronous motor (IPMSM) based on fuzzy-approximation. Fuzzy logic systems are used to approximate the nonlinearities of the discrete-time IPMSM drive system which is derived by direct discretization using Euler method, and a discrete-time fuzzy position tracking controller is designed via backstepping approach. In contrast to existing results, the advantage of the scheme is that the number of the adjustable parameters is reduced to two only and the problem of coupling nonlinearity can be overcome. It is shown that the proposed discrete-time fuzzy controller can guarantee the tracking error converges to a small neighborhood of the origin and all the signals are bounded. Simulation results illustrate the effectiveness and the potentials of the theoretic results obtained.
Keywords
adaptive control; approximation theory; discrete time systems; fuzzy logic; machine control; nonlinear control systems; permanent magnet motors; position control; IPMSM; approximation-based discrete-time adaptive position tracking control; coupling nonlinearity; fuzzy logic systems; fuzzy-approximation; interior permanent magnet synchronous motors; Adaptive systems; Approximation methods; Backstepping; Couplings; Drives; Mathematical model; Stability analysis; Backstepping; discrete-time; fuzzy-approximation; permanent magnet synchronousmotor(PMSM);
fLanguage
English
Journal_Title
Cybernetics, IEEE Transactions on
Publisher
ieee
ISSN
2168-2267
Type
jour
DOI
10.1109/TCYB.2014.2351399
Filename
6894188
Link To Document