Upgraded Asynchronous Motors with a Squirrel Cage Rotor
- Authors: Makarov L.N.1,2, Denisov V.N.3, Kurilin S.P.3
-
Affiliations:
- OOO Ruselprom
- OAO Scientific-Research Project-Construction Technological Institute of Electric Machine Building
- Smolensk Branch, Moscow Power Engineering Institute (MEI)
- Issue: Vol 90, No 3 (2019)
- Pages: 216-220
- Section: Article
- URL: https://journals.rcsi.science/1068-3712/article/view/231540
- DOI: https://doi.org/10.3103/S106837121903012X
- ID: 231540
Cite item
Abstract
The article presents the results of scientific research on solving the problem of reducing the starting currents of induction motors with a squirrel-cage rotor. Theoretical and technical aspects of the solution are discussed. The possibilities of solving the problem on sets of parametrically homogeneous cells and parametrically inhomogeneous cells are analyzed. The use of a parametrically inhomogeneous cell allows for the start-up period to generate additional spectra of the harmonics of the current and cell fields, thus replenishing the field of differential scattering of the rotor. Inductive resistance corresponding to additional scattering is designed to limit the starting current and practically disappear in operating conditions. Analysis of the question shows that the possibilities of a homogeneous cell in this respect are very limited and are represented only by one basic spectrum of harmonics. The results of simulation of currents in a cell with different distribution of inhomogeneous elements are presented. The results of simulation of current displacement in the region of inhomogeneity are also presented. The resulted results testify that the problem of decrease in a starting current of asynchronous electric motors is solved theoretically and technically.
About the authors
L. N. Makarov
OOO Ruselprom; OAO Scientific-Research Project-Construction Technological Institute of Electric Machine Building
Author for correspondence.
Email: journal-elektrotechnika@mail.ru
Russian Federation, Moscow; Moscow
V. N. Denisov
Smolensk Branch, Moscow Power Engineering Institute (MEI)
Email: journal-elektrotechnika@mail.ru
Russian Federation, Smolensk
S. P. Kurilin
Smolensk Branch, Moscow Power Engineering Institute (MEI)
Email: journal-elektrotechnika@mail.ru
Russian Federation, Smolensk
Supplementary files
