scholarly journals On the mathematical saturated models of dual stator squirrel-cage induction machine

2018 ◽  
Vol 1 (3) ◽  
pp. 1-5
Author(s):  
Y Babaoğlu ◽  
◽  
CP Çarkçı ◽  
S Erkoç ◽  
F Karaca ◽  
...  
2018 ◽  
Vol 3 (3) ◽  
pp. 143-150
Author(s):  
Abdelghani CHAHMI

This work is a part of the thematic of monitoring and fault diagnosis of the squirrel cage three-phase induction machine. The choice of this type of machine is justified by the growing success it has exhibited, mainly, in the electric drives with variable speed. Signal based detection methods are presented is validated in simulation. The proposed diagnosis approach requires only little experimental data, and more importantly it provides efficient simulation tools that allow characterizing faulty behavior.In this study, the proposed approach considers the value of rotor resistance as fixed for condition monitoring. This value in the diagnostic tools which one uses is not fixed contrary to the classical approaches of control of machine.


Author(s):  
Rahma Hammami ◽  
Imène Ben Ameur ◽  
Khaled Jelassi

This article deals with field-oriented control of induction machine squirrel cage. A robust fractional-order controller is applied and investigated to control the induction machine currents isd and isq. The fractional-order gives better fit in regulation operation. For this purpose, this controller form is recommended, especially in industrial systems, thanks to his flexibility, robustness and efficiency to solve complex problems such as electrical parameters changes (i.e. uncertain parameter) caused by the temperature effect. Based on frequency specification and several constraints, the fractional-order controller is designed. The fmincon toolbox optimization is used to adjust ki, kp and α values. In order to show the reliability of the developed controller in the induction machine behavior, several simulation results are carried out and illustrated.


2008 ◽  
Vol 55 (7) ◽  
pp. 2798-2809 ◽  
Author(s):  
Xiaoping Tu ◽  
L.-A. Dessaint ◽  
R. Champagne ◽  
K. Al-Haddad

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