Background
Type: Conference Paper

An adaptive fuzzy sliding mode control of a permanent magnet linear synchronous motor for an inimical command velocity profile

Journal: ()Year: 2011/01/01Volume: Issue: Pages: 41 - 46
Ghaebi Panah P.Ataei M.a Shafiei A.
DOI:10.1109/ICSEngT.2011.5993418Language: English

Abstract

An adaptive fuzzy variable structure velocity controller of a permanent magnet linear synchronous motor (PMLSM) is designed for a command profile which has rapid change in a wide range. This is performed for comprehensive nonlinear model of PMLSM including non-idealities such as detent force, parameter uncertainty, unpredicted disturbance, and nonlinear friction. The proposed method is based on the adaptive sliding mode control (SMC) enhanced with a fuzzy inference to determine coefficients of the controller. The fuzzy block uses the desired and real velocity, and also its derivative as three inputs and a and C as outputs. A set of 343 rules come together to make a fuzzy rule base which brings a powerful controller with high resolution for different situations. As an evaluation criterion of the performance of the proposed method, a proportional-integral (PI) controller is designed whose parameters are optimally tuned by the particle Swarm Optimization (PSO) algorithm for better comparison. © 2011 IEEE.


Author Keywords

Fuzzy InferenceParticle Swarm OptimizationPermanent Magnet Linear Synchronous MotorVariable Structure ControlAdaptive control systemsControllersFuzzy inferenceFuzzy rulesParticle swarm optimization (PSO)Real variablesSliding mode controlSynchronous motorsSystems engineering

Other Keywords

Adaptive control systemsControllersFuzzy inferenceFuzzy rulesParticle swarm optimization (PSO)Real variablesSliding mode controlSynchronous motorsSystems engineeringAdaptive fuzzyAdaptive fuzzy sliding-mode controlsAdaptive sliding mode controlDetent forcesEvaluation criteriaFuzzy rule baseHigh resolutionNon-idealitiesNon-linear modelNonlinear frictionParameter uncertaintyParticle swarmParticle swarm optimization algorithmPermanent Magnet Linear Synchronous MotorProportional integral controllersRapid changesVariable structuresVelocity profilesPermanent magnets