1. Usoltsev AA. Frequency control of asynchronous motors: textbook. St. Petersburg: St. Petersburg State University of ITMO; 2006.

2. Aliev II. Asynchronous motors in three–phase and single–phase modes. Moscow: IP RadioSoft; 2004.

3. Kopylov IP. Design of electric machines: textbook for universities [Internet]. 4th ed. Moscow: Yurait Publishing House; 2025 [cited 2025 Febr 02]. Available from: https://urait.ru/bcode/566208

4. Design of electric machines. 3rd ed. Moscow: Energy; 1970.

5. Tikhonov PhV. Development of methods to select the parameters of an asynchronous traction motor, taking into account the thermal state of the windings [dissertation]. [Moscow (RF)]; 2008.

6. Zabudsky EI. Electric machines. Asynchronous machines: textbook for universities. Moscow: Megapolis; 2017.

7. Zyuzev AM, Metelkov VP. Evaluation of the heating of the asynchronous motor stator winding in an electric drive with periodic loading. ES and K [Internet]. 2010[cited 2025 Febr 12];1. Available from: https://cyberleninka.ru/article/n/otsenka-nagreva-obmotki-statora-asinhronnogo-dvigatelya-v-elektroprivode-s-periodicheskim-harakterom-nagruzheniya

8. Fedorova KG. Overview of existing thermal models for a frequency-controlled asynchronous electric motor. Glavny Energetik. 2018;7.

9. Galushko VN, Evdasev IS, Patskevich VA, Drabov AV. Calculation of asynchronous motors: textbook for coursework. Gomel: BelGUT; 2016.

10. Kopylov IP. Design of electric machines. Moscow: Energiya; 1980.