DocumentCode :
53843
Title :
A Voltage-Behind-Reactance Model of Five-Phase Induction Machines Considering the Effect of Magnetic Saturation
Author :
Abdel-khalik, A.S. ; Ahmed, Shehab ; Elserougi, Ahmed Abbas ; Massoud, Ahmed Mohamed
Author_Institution :
Dept. of Electr. Eng., Alexandria Univ., Alexandria, Egypt
Volume :
28
Issue :
3
fYear :
2013
fDate :
Sept. 2013
Firstpage :
576
Lastpage :
592
Abstract :
Five-phase induction machines are generally modeled using multiple dq planes or using a phase variable model. This paper considers modeling five-phase induction machines using a voltage-behind-reactance (VBR) configuration. This configuration lends itself suitable for time-domain circuit-based simulators as the MATLAB/Simulink SimPowerSystems (SPS) toolbox. The stator electrical dynamics are represented in five-phase coordinates, while the rotor electrical circuit is modeled using rotor flux linkage as the state variable and expressed in the dq stator reference frame. The VBR model is equivalent to a conventional dq model; however, it facilitates the connection of an external inductance without affecting numerical accuracy and calculation efficiency. It also facilitates the simulation of different winding connections, series-connected multimotors, and open phase(s) conditions. The model is, first, derived for a magnetically linear system and then it is extended to include the effect of magnetic saturation. The flux correction method is used to represent the effect of magnetic saturation with a simple modification to represent the effect of cross coupling between fundamental and third sequence planes due to saturation effect. The dynamic cross saturation is considered by adding compensating terms that depend on magnetizing inductance variation. The proposed model is experimentally verified using a prototype 1.5-hp five-phase induction machine under different operating conditions.
Keywords :
asynchronous machines; magnetic flux; mathematics computing; numerical analysis; rotors; stators; time-domain analysis; Matlab-Simulink SimPowerSystems toolbox; SPS toolbox; VBR model; dq stator reference frame; dynamic cross saturation; five-phase induction machines; magnetic saturation; magnetically linear system; magnetizing inductance variation; multiple dq planes; numerical analysis; open phase condition; phase variable model; power 1.5 hp; rotor electrical circuit; rotor flux linkage; series-connected multimotor; stator electrical dynamics; third sequence planes; time-domain circuit-based simulators; voltage-behind-reactance configuration; voltage-behind-reactance model; winding connection; Five-phase machine; flux correction method; induction machine dq model; magnetic saturation; pentagon connection; phase variable model; star connection; voltage behind reactance;
fLanguage :
English
Journal_Title :
Energy Conversion, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8969
Type :
jour
DOI :
10.1109/TEC.2013.2258467
Filename :
6514901
Link To Document :
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