AN OPTIMIZATION MODEL FOR THE SYNTHESIS OF THE CONTROL SYSTEM OF AN ALTERNATING CURRENT ELECTRIC DRIVE BASED ON THE USE OF A VECTOR CONTROL ALGORITHM

Authors

  • M. Zapolovsky
  • M. Mezentsev

DOI:

https://doi.org/10.26906/SUNZ.2022.4.036

Keywords:

optimization model, alternating current electric drive, synthesis, optimization methods, mathematical models, quality criteria, dynamic processes, research and refinement, structures

Abstract

Considered the issues of developing an optimization model for the synthesis of the AC traction electric drive control system of a diesel train and its research, using modern optimization methods based on mathematical models and vector control algorithms. In the process of the decision: mathematical models of the elements of the traction electric drive systems of the diesel train were developed, taking into account the flow of electromagnetic processes in them; the analysis and selection of optimization methods and quality criteria typical for this type of control objects, which can be used for the synthesis of the control system of the electric drive of a diesel train, taking into account the mathematical model that describes dynamic processes; the development of optimization models of the control system of the electric drive of the electric transmission of a diesel train using quality criteria typical for this type of electric transmission was carried out; studies and refinements were made on optimization models of the structures and parameters of the control system, both with known control laws and with those proposed in the synthesis process.

Downloads

References

Horstmann Daniel, WagnerRudolf, Weigel Wolf-Dieter. 100 Jahre Entwicklung der Antriedstechnik fur electrische Bahnen. Teil 2. // Elek. Bahnen. – 2003. – № 7. – P.338–345

Усольцев А.А. Векторное управление асинхронными двигателями: Учебное пособие / А.А. Усольцев СПб: СПбГУ ИТМО, 2002. – 43 с.

Сандлер А.С. Автоматическое частотное управление асинхронными двигателями / А.С. Сандлер, Р.С. Сарбатов. – М.: Энергия, 1974. – 328 с.

Рудаков В. В. Асинхронные электроприводы с векторным управлением / В.В. Рудаков, И.М. Столяров, В.А. Дартау – Л.: Энергоатомиздат, 1987. – 136 с.

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

Моделирование и оптимизация систем управления и контроля локомотивов / [Носков В.И., Дмитриенко В.Д., Заполовский Н.И., Леонов С.Ю.]. – Х.: ХФИ «Транспорт Украины», 2003. − 248 с.

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.

Пересада С.М. Грубое векторное управление моментом и потоком асинхронного двигателя / С.М. Пересада, С.Н. Ковбаса, В.С. Бовкунович // Техн. електродинаміка. – 2010. – № 1. – С. 60-66.

Заполовський М.Й. Синтез управлінь для оптимізації динамічних процесів електроприводу змінного струму / М.Й. Заполовський, М.В. Мезенцев, В.В. Скородєлов// Системи управління, навігації та зв’язку. – Вип. 4(50). Полтава. 2018. С. 38-41.

Заполовський М.Й. Математична модель для синтезу управлінь електроприводом змінного струму/ М.Й. Заполовський, В.В. Скородєлов, М.В. Мезенцев // Системи управління, навігації та зв’язку. – Вип. 5(57). Полтава. 2019. С. 16-21.

Published

2022-11-29

Most read articles by the same author(s)