DocumentCode
3099112
Title
Application of SMC with I/O Feedback Linearization to the Control of the Cascade Controlled-Rectifier/Inverter-Motor Drive System with a Small DC-Link Capacitor
Author
Liutanakul, Pisit ; Pierfederici, Serge ; Meibody-Tabar, Farid
Author_Institution
GREEN-INPL-CNRS, Vandoeuvre-les-Nancy
fYear
2005
fDate
16-16 June 2005
Firstpage
922
Lastpage
928
Abstract
The necessity of the compactness of the converters in many applications imposes the reduction of the size of their different components when it is possible. In this paper a control method allowing the use of a small size DC-link capacitor for the assembly voltage controlled-rectifier/inverter-motor drive system is proposed. This is achieved by adding the power balance equation in the system´s model and the application of an exact I/O feedback linearization technique in a way that the rectifier controller compensates any sudden change in the inverter load, which is here an induction motor. Since the exact I/O feedback linearization technique is sensitive to the uncertainties over system parameters, a robust control strategy based on sliding mode controller (SMC) is proposed. By this approach, the DC-link voltage becomes almost insensitive to the load variations. As a result, the DC-link voltage level is stabilized with a small DC-link capacitor. The robust property of the overall controlled system to the variation of the rotor time constant of the induction motor is investigated when an opened loop flux observer is used. The simulation and experimentation results can confirm the performance of the control system
Keywords
cascade control; induction motor drives; invertors; linearisation techniques; machine control; open loop systems; power capacitors; rectifying circuits; robust control; rotors; variable structure systems; DC-link capacitor; I-O feedback linearization technique; cascaded control; induction motor; open loop flux observer; power balance equation; rectifier controller compensation; rectifier-inverter-motor drive system voltage control; robust control strategy; rotor time constant; sliding mode controller; Capacitors; Control systems; Induction motors; Linear feedback control systems; Linearization techniques; Open loop systems; Robust control; Size control; Sliding mode control; Voltage control;
fLanguage
English
Publisher
ieee
Conference_Titel
Power Electronics Specialists Conference, 2005. PESC '05. IEEE 36th
Conference_Location
Recife
Print_ISBN
0-7803-9033-4
Type
conf
DOI
10.1109/PESC.2005.1581738
Filename
1581738
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