ALGORITHM OF FLUX REFERENCE FORMING FOR VECTOR CONTROLED INDUCTION MOTOR IN FIELD WEAKENING REGION FOR TRACTION APPLICATIONS
ARTICLE_39_PDF (Українська)

Keywords

induction motor
vector control
field weakening
traction applications асинхронный двигатель
векторное управление
ослабление поля
транспортные применения

How to Cite

[1]
Воронко, А. 2014. ALGORITHM OF FLUX REFERENCE FORMING FOR VECTOR CONTROLED INDUCTION MOTOR IN FIELD WEAKENING REGION FOR TRACTION APPLICATIONS. Tekhnichna Elektrodynamika. 5 (Aug. 2014), 119.

Abstract

An algorithm of flux reference forming in field weakening region for vector control systems of induction motor for traction application is developed. The proposed solution can effectively limit the stator voltage at a predetermined level, according to the DC-bus voltage of supply converter. Presented experimental results confirm the effectiveness of the proposed algorithm. References 6, figure 1.

ARTICLE_39_PDF (Українська)

References

Leonhard W. Control of Electrical Drives. (3rd edition). – Berlin: Springer-Verlag, 2001. – 460 p.

Peresada S., Tilli A., Tonielli A. Theoretical and experimental comparison of indirect field-oriented controllers for induction motors // IEEE Transactions on Power Electronic. – 2003. – Vol. 18. – No. 1. – Pp. 151–163.

Kim Sang-Hoon, Sul Seung-Ki. Maximum torque control of an induction machine in the field weakening region // IEEE Transactions on Industry Applications. – 1995. – Vol. 31. – No. 4. – Pp. 787–794.

Abu-Rub H., Schmirgel H., Holtz J. Maximum Torque Production in Rotor Field Oriented Control of an Induction Motor at Field Weakening // IEEE International Symposium on Industrial Electronics. – 2007. – Pp. 1159–1164.

Briz F., Diez A., Degner M. W., Lorenz R.D. Current and flux regulation in field-weakening operation // IEEE Transactions on Industry Applications. – 2001. – Vol. 37. – No. 1. – Pp. 42−50.

Levi E., Sokola M., Vukosavic S.N. A method for magnetizing curve identification in rotor flux oriented induction machines // IEEE Transactions on Energy Conversion. – 2000. – Vol. 15. – No. 2. – Pp. 157–162.

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