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Real time PI-backstepping induction machine drive with efficiency optimization

delete2017-09-01
delete26
PRE
AI
F
Fethi Farhani *
C
Chiheb Ben Regaya
A
Abderrahmen Zaafouri
A
Abdelkader Châari
DOI:10.1016/j.isatra.2017.07.003delete
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Abstract

Abstract

En 中文
This paper describes a robust and efficient speed control of a three phase induction machine (IM) subjected to load disturbances. First, a Multiple-Input Multiple-Output (MIMO) PI-Backstepping controller is proposed for a robust and highly accurate tracking of the mechanical speed and rotor flux. Asymptotic stability of the control scheme is proven by LYAPUNOV Stability Theory. Second, an active online optimization algorithm is used to optimize the efficiency of the drive system. The efficiency improvement approach consists of adjusting the rotor flux with respect to the load torque in order to minimize total losses in the IM. A dSPACE DS1104 R&D board is used to implement the proposed solution. The experimental results released on 3 kW squirrel cage IM, show that the reference speed as well as the rotor flux are rapidly achieved with a fast transient response and without overshoot. A good load disturbances rejection response and IM parameters variation are fairly handled. The improvement of drive system efficiency reaches up to 180% at light load. (C) 2017 ISA. Published by Elsevier Ltd. All rights reserved.
Keywords:
Field Oriented Control
Efficiency
Induction machine
MIMO PI-backstepping
Optimization
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Journal

ISA Transactions cover
ISA Transactions
IF:
6.5
Papers:
5.9K
Citations:
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Organization

U
universite de tunis
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Papers: 987
Citations: 1