ADAPTATION OF THE VECTOR CONTROL ALGORITHM FOR THE DEVELOPMENT OF AN AC DRIVE CONTROL SYSTEM

Authors

  • M. Zapolovskyi
  • M. Mezentsev
  • M. Olifir

DOI:

https://doi.org/10.26906/SUNZ.2024.3.034

Keywords:

control system, alternating current traction electric drive, diesel train, vector control algorithms, PID controller, mathematical model, transition process, quality criteria

Abstract

The issues of developing models for the synthesis of AC traction electric drive control systems of a diesel train and their research using the MATLAB package are considered. On the basis of an analytical review of existing algorithms, in particular, control systems using vector control algorithms, a structural diagram of the controller of the Automated Control System (ACS) circuit of the electric drive is proposed. To stabilize the flow coupling in the ACS structure, the use of a PID controller is proposed, and the gain coefficients are determined by modeling to ensure the requirements for the quality of transient processes, and the possible ranges of gain coefficient changes are established. The obtained analytical relations and mathematical models can be used for the development of the ACS of the electric drive of a diesel train and the calculation of its parameters for a given quality criterion

Downloads

References

Blaschke F. Das Prinzip der Feldorientierung. Die Grundlage für die Transvektor-Reglung von Drehfeldmaschine / F. Blaschke // Siemens Zaitschrift. – 1971. – № 45. – Н. 10.

Bose Bimal K. Modern Power Electronics and AC drives / Bimal K. Bose. – Prentice Hall PTR: Prentice-Hall Inc. – 2002. – 712 p.

М.Й. Заполовський, М.В. Мезенцев. Оптимізаційна модель для синтезу системи керування електроприводу змінного струму на основі використання алгоритму векторного управління // Системи управління, навігації та зв’язку. – №4. Полтава. – 2022.

М.Й. Заполовський, М.В. Мезенцев, О.І. Баленко, М.В. Оліфір Оптимізаційна модель тягового асинхронного електроприводу дизель-поїзда та її дослідження // Системи управління, навігації та зв’язку. – №3. Полтава. – 2023. С. 45-53.

O.K. Ablesimov, E.E. Alexandrov, and I.E. Alexandrova, Automatic control of moving objects and technological processes. Kharkov: NTU "KhPI", – 2008. – 443 p. (in Ukrainian).

Volkov A.V. Asynchronous motor drive based on self-excited current inverter with switched-off thyristors and provided with redicting relay and vector regulation of stator current / A.V. Volkov, I.A. Kosenko // Published in Elektrotekhnika. – 2008. – No 10. – P. 6-17.

Bose, Bimal K. (2006). Power Electronics and Motor Drives: Advances and Trends. Amsterdam: Academic. p. 22.

Rafiq, Md Abdur (2006). "Fast Speed Response Field-Orientation Control of Induction Motor Drive with Adaptive Neural Integator". Istanbul University Journal of Electrical & Electronics Engineering. 6 (2): P. 229.

Dong, Gan (Dec 2007). "Sensorless and Efficiency Optimized Induction Machine Control with Associated Converter PWM Modulation Schemes". Tennessee Technological University. P. 10.

Published

2024-09-06

Most read articles by the same author(s)