Abstract
The practical issues of using an asynchronous electric drive with reactive power control with ensuring the independence of the load and over load capacity from changes of induction motor parameters, uninterrupted diapason of speed regulation, including zero, fast regulation and simplification of the microprocessor control system are considered .It is show what it may be to implement. References 8, figures 6.
References
Chepkunov R.A. Asynchronous electric drive with reactive power control. Tekhnichna elektrodynamika. 2021. No 5. Pp. 49–54. DOI: https://doi.org/10.15407/techned2021.05.049. (Ukr)
Blaschke F. The principle of field orientation applied to the new transvector closed-loop control system for rotating field machines. Siemens Rev. 1972. 39. Pp. 217–220.
Peresada C.M. General theory of vector control of asynchronous mortor. Part I. Problems of vector control in asynchronous electric driver: short review and formulation of problem. Tekhnichna elektrodynamika. 1999. No 3. Pp. 27–31. (Rus)
Potapenko E.M., Potapenko E.E. Robust algorithms of the vector control of electric drive. Zaporohzje: ZNTU, 2009. 352 p. (Rus)
Vinogradov A.B., Chistoserdov V.M., Sibircev A.N. Adaptation system of vector controlling of asynchronous electric drive. Elektrotekhnika. 2003. No 7. Pp. 7–17. (Rus)
Chepkunov A.I. Optimum microprocessor controlling of electric drive. Pratsi Instytutu electrodynamiky Natsionalnoi Akademii Nauk Ukrainy. 2003. No 1. Pp. 106–108. (Rus)
Chepkunov A.I. Effective controlling of asynchronous electric drive. Tekhnichna elektrodynamika. 2006. No 2. Pp. 52–57. (Rus)
Chepkunov R. Regulation of electric drives with indirect measuring of speed. Saarbrücken, Deutschland: LAP Lambert Academic Publishing, 2015. 204 p. (Rus)

This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.
Copyright (c) 2023 Array