Adaptive Fuzzy Logic Control of Permanent Magnet Synchronous Machines With Nonlinear Friction

被引:212
作者
Chaoui, Hicham [1 ]
Sicard, Pierre [1 ]
机构
[1] Univ Quebec Trois Rivieres, Ind Elect Res Grp, Sch Engn, Trois Rivieres, PQ G9A 5H7, Canada
关键词
Artificial intelligence; fuzzy logic; Lyapunov stability; neurofuzzy control; speed control; synchronous machine; PARAMETER-ESTIMATION; CONTROL ALGORITHM; TORQUE CONTROL; MOTOR; IMPLEMENTATION; DRIVE;
D O I
10.1109/TIE.2011.2148678
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
In this paper, an adaptive fuzzy control scheme is introduced for permanent magnet synchronous machines (PMSMs). The adaptive control strategy consists of a Lyapunov stability-based fuzzy speed controller that capitalizes on the machine's inverse model to achieve accurate tracking with unknown nonlinear system dynamics. As such, robustness to modeling and parametric uncertainties is achieved. Moreover, no explicit currents loop regulation is needed, which simplifies the control structure and unlike other control strategies, no a priori offline training, weights initialization, parameters knowledge, voltage, or current transducer is required. The system's convergence and stability are proved by Lyapunov stability theory, which yields an improved performance. Simulation results for different situations highlight the performance of the proposed controller in transient, steady-state, and standstill conditions. Furthermore, the adaptive fuzzy systems inherent parallelism makes them a good candidate for implementation in real-time PMSM drive systems.
引用
收藏
页码:1123 / 1133
页数:11
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