Abstract
This paper investigates the mechanical transient processes of a frequency-controlled induction motor operating under asymmetric conditions. The study focuses on evaluating the dynamic behavior of induction motor drives under voltage asymmetry and improving the effectiveness of frequency-controlled electric drive systems.
Materials and MethodsA mathematical model incorporating the time-dependent frequency variation and the load characteristics acting on the induction motor shaft was employed. Since the resulting system of differential equations contains numerous variables and unknown parameters, a graphical-analytical method was applied to analyze the transient processes efficiently.
ResultsThe analysis made it possible to determine the acceleration and deceleration characteristics of the rotating magnetic field, as well as the variation of motor slip as a function of time and frequency under different levels of voltage asymmetry. These findings provide a theoretical basis for implementing frequency-controlled induction motor drives and for establishing the requirements of automatic control systems.
ConclusionThe results demonstrate that frequency-controlled induction motor drives can operate effectively under asymmetric conditions; however, their transient mechanical processes are highly sensitive to voltage disturbances. Therefore, maintaining voltage symmetry, implementing protective control functions, and predicting transient behavior through mathematical modeling are essential for improving the reliability and efficiency of electric drive systems.
References
[1]. O‘zbekiston Respublikasi Prezidentining 2022-yil 28-yanvardagi “2022–2026-yillarga mo‘ljallangan Yangi O‘zbekistonning taraqqiyot strategiyasi to‘g‘risida”gi PF–60-son Farmoni.
[2]. Аллаев К.Р., Хошимов Ф.В. Энергосбережение на промышленных предприятиях.
– Ташкент: Fan, 2014. – 368 с.
[4]. Камалов Т.С., Шавазов А.А., Сайфуллаева Л.И. Вопросы пуска и регулирования производительности насосного агрегата насосных станций систем машинного орошения // Энергосбережение и Водоподготовка. – 2019. – № 3(119). – С. 51–54.
[5]. Лезнов Б.С. Энергосбережение и регулируемый привод в насосных установках. – Москва: ИК «Ягорба-Биоинформсервис», 1998. – 381 с.
[6]. Shavazov A.A., Ishanova D.A. Mathematical models and transfer functions of a frequency-controlled asynchronous motor // European Journal of Interdisciplinary Research and Development. – 2022. – Vol. 8. – ISSN 2720-5746.
[7]. Ishnazarov O., Shavazov A.A., Ishanova D.A. Closed Frequency Control System of Asynchronous Motor in Irrigation Pump // Pioneer: Journal of Advanced Research and Scientific Progress (JARSP). – 2022. – Vol. 1, Issue 4. – ISSN 2751-7551.
[8]. Isakov A., Shavazov A., Elmuratova A. Management efficiency of pumping aggregates through frequency converter // IOP Conference Series: Earth and Environmental Science. – 2022. – Vol. 1076. – Article 012050.
[9]. Shavazov A.A., Eshquziev Kh.M. Interconnected systems of pumping stations with asynchronous frequency electric drives // Scientific-Technical Journal of FerPI. – 2023. – Vol. 27. – Special Issue No. 15.
[10]. Юнусов Р., Имомназаров А., Бобокулов З. Моделирование энергосберегающего асинхронного двигателя для электропривода механизмов поступательного движения // Инновацион технологиялар. – 2022. – № 47. – С. 34–38.
[11]. Yunusov R.F., Yusupov S.B., Sattarov N.E., Imomnazarov A.B., Abduganiev A.A., Rajabov N.K. Simulation of linear asynchronous motors of electric drive of lifting mechanisms // AIP Conference Proceedings. – 2023. – Vol. 2612, No. 1. – Article 050030.

This work is licensed under a Creative Commons Attribution 4.0 International License.
Copyright (c) 2026 Shavazov, A.A., Eshqo‘ziyev, X.M., Imomnazarov, A.B., Tuxtayev, B.B. (Muallif)