DocumentCode :
2975723
Title :
Vector control for a three-phase induction motor based on optimal regulator theory
Author :
Negm, Mohamed M. ; Leithy, Eng Sabry Anwer ; Dopa, H. ; Kame, Ahamed
Author_Institution :
Electron. Tech. Dept., Dammam Tech. Coll., Saudi Arabia
Volume :
2
fYear :
1996
fDate :
24-27 Sep 1996
Firstpage :
654
Abstract :
A new technique for the speed control of a three-phase induction motor (IM), based on the improved optimal regulator theory is synthesized in this paper. The proposed technique comprises a new error system, vector control of IMs and a preview feedforward control loop. This is to enhance the transient response of the controlled system and to increase its robustness. The IM is described as a three-input, three-output controlled object. The state equations of the IM, suitable for current control, are derived based on the vector method. In addition, a field-oriented control system is constructed by deriving the state equations in a synchronously rotating reference frame, and trying to maximize the developed torque over the whole control range. In the synthesized control system, speed control and field-oriented control with constant flux are attained simultaneously. The design procedure of the optimal regulator technique with preview feedforward steps and the new error system technique are investigated. Computer simulation results are obtained to demonstrate the reliability and effectiveness of this controlled method
Keywords :
control system analysis computing; control system synthesis; electric current control; electric machine analysis computing; feedforward; induction motors; machine control; optimal control; predictive control; robust control; transient response; velocity control; computer simulation; control design; control simulation; current control; field-oriented control; optimal regulator theory; preview feedforward control; robustness; speed control; state equations; synchronously rotating reference frame; three-phase induction motor; transient response; vector speed control; Control system synthesis; Control systems; Equations; Error correction; Induction motors; Machine vector control; Regulators; Torque control; Transient response; Velocity control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
AFRICON, 1996., IEEE AFRICON 4th
Conference_Location :
Stellenbosch
Print_ISBN :
0-7803-3019-6
Type :
conf
DOI :
10.1109/AFRCON.1996.562965
Filename :
562965
Link To Document :
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