Title :
Parameter Identification of Multiphase Induction Machines With Distributed Windings—Part 1: Sinusoidal Excitation Methods
Author :
Yepes, Alejandro G. ; Riveros, Jose A. ; Doval-Gandoy, Jesús ; Barrero, Federico ; López, Óscar ; Bogado, Blas ; Jones, Martin ; Levi, Emil
Author_Institution :
Dept. of Electron. Technol., Univ. of Vigo, Vigo, Spain
Abstract :
Multiphase induction machines (IMs) are gaining increasing interest in industry due to their numerous advantages over the conventional three-phase ones. A lot of different parameter estimation methods have been developed for three-phase IMs, but the existing literature regarding specific identification techniques for multiphase IMs is almost nonexistent at this point. This paper proposes simple offline methods to estimate the stator resistance and stator leakage inductance of multiphase IMs with distributed windings, under different conditions, utilizing the machine´s degrees of freedom associated with the nonflux/torque producing current components. Once these parameters are identified, the rotor ones can be easily calculated by combination with the total values obtained from locked-rotor tests. The procedure enables segregation of the stator and rotor parameters in a simple manner, something that is very difficult to achieve in three-phase IMs where, usually, equality of leakage inductances and a constant stator resistance are assumed. In this manner, the magnetizing inductance can be then also more accurately assessed from no-load tests, because the error in its estimation that would be caused by assuming both leakage inductances to be equal is avoided. The proposed methods are experimentally tested on two different five-phase IMs.
Keywords :
asynchronous machines; machine testing; parameter estimation; rotors; stators; constant stator resistance; current component; distributed windings; five-phase IM; leakage inductance equality; locked-rotor tests; magnetizing inductance; multiphase IM; multiphase induction machines; no-load tests; nonflux-torque; offline method; parameter estimation method; parameter identification; rotor parameter; sinusoidal excitation method; specific identification techniques; stator leakage inductance; stator parameter; three-phase IM; Induction machines; Parameter estimation; Stator windings; Experimental testing; multiphase induction machines (IMs); parameter estimation;
Journal_Title :
Energy Conversion, IEEE Transactions on
DOI :
10.1109/TEC.2012.2220967