Hardware-software complex for experimental research of electric drives of asynchronous motors with squirrel-cage rotor with traditional winding and motors with combined winding

Author:

Tsvetkov A. N.1ORCID,Shi Doan Ngok1

Affiliation:

1. Kazan State Power Engineering University

Abstract

THE PURPOSE. Modern requirements for electric drives impose increasingly stringent conditions for energy efficiency, dimensions and weight. The weight and size parameters are especially noticeable in relation to the rapidly developing electric transport. The achieved technological limits practically do not give tangible results in improving the characteristics of known structures, so there is a struggle for units of percent and fractions of a percent in terms of increasing the efficiency of equipment.MATERIALS. Debugging and fine-tuning of electric drive elements requires numerous tests on research benches using measuring channels and analog-to-digital conversion (ADC), digital-to-analog conversion (DAC), digital-to-digital conversion (DDC).RESULTS. The creation of research stands implies the development of a hardware-software complex (HSC) based on high-speed computing devices. The structure of the HSC included the developed frequency converter with the possibility of adjusting the algorithms for controlling the electric motor and the mathematical model of the electric motor itself. The object of experimental research was prototypes of electric drives based on asynchronous electric motors with a squirrel-cage rotor and a combined stator winding.CONCLUSION. The article discusses ways to organize the measuring and control channels of the measuring and information system of the research stand, which makes it possible to study samples of asynchronous electric motors in idling and under load modes.

Publisher

Kazan State Power Engineering University

Subject

Pharmacology (medical),Complementary and alternative medicine,Pharmaceutical Science

Reference15 articles.

1. Zmieva KA, Yakovlev AP. Optimization of the line of energy-saving asynchronous motors with dimensions from 100 to 132 with combined windings. Electrical engineering. 2014;7;32-35.

2. Moshchinsky YuA, Sokolova EM. Advantages and Drawbacks of the SlavyankaType Combined Winding. Elektrichestvo. 2018;11:23–31

3. Deinego VS, Duyunov DA, Ivanov VA. Changing the design of the windings of asynchronous electric motors has the potential to ensure the reliability of electrical networks. Russian networks. 2015;2(29):42-49

4. Mukhametshin AI, Kornilov VYu. Modernization of electric drives of sucker-rod pumping units based on energy-efficient asynchronous electric motors to a combined two-layer winding. Proceedings of the VI National Scientific and Practical Conference, in 2 volumes. Kazan. 2020;75-78.

5. Afletonov RA., Gordeev VYu., Usmanov IK, et.al. Winding of an energy-efficient asynchronous motor. Utility model patent RU 176753 U1, 01/29/2018. Application No. 2017109563 dated 03/21/2017.

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