IMPROVEMENT IN SPEED PERFORMANCE OF AN INDUCTION MOTOR WITH SLIDING MODE CONTROLLER AND ANN FOR DTC
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Date
2020-01-01
Journal Title
Journal ISSN
Volume Title
Publisher
university of eloued جامعة الوادي
Abstract
To further improve the dynamic speed control performance of an induction motor (IM) using
a controller based on sliding mode control (SMC) strategy, the switching table for direct
torque control (DTC) is realized using a feed forward artificial neural network (ANN). The
proposed feed-forward ANN consists of three layers: input, hidden and output layer. The input
layer consists of three neurons (sector of flux vector, electromagnetic torque error and stator
flux error), the hidden layer consists of a number of neurons that can be determined by
experiment to obtain good results. The output layer consists of three neurons (three signals of
the converter Sa, Sb and Sc). Simulation results under MATLAB environment are presented
and compared with classical DTC using an Integral-proportional (IP) controller to verify the
proposed approach.
Description
artical
Keywords
nduction motor (IM); direct torque control (DTC); integral-proportional (IP) controller; artificial neural network (ANN); sliding mode control (SMC).
Citation
Y. Bekakra*1, D. Ben Attous2, Z. Tir3, O. Malik. RISK AIMPROVEMENT IN SPEED PERFORMANCE OF AN INDUCTION MOTOR WITH SLIDING MODE CONTROLLER AND ANN FOR DTC. Journal of Fundamental and sciences. vol.12, no 1.januy 2020. Faculty of exact sciences. university of el oued. [visited in 01/05/2019. available from [copy the link here]