1. Ivanov, A. M., Polyashov, L. I., Ivanov, S. A. Hybrid power plants for electric buses [Gibridnie energeticheskie ustanovki dlya elektrobusov]. Mashinostroenie, 2000, Iss. 10, pp. 18–21.
2. Kossov, E. E., Azarenko, V. A., Bychkov, D. A. [et al]. Development of a concept for development of autonomous traction rolling stock [Razrabotka kontseptsii razvitiya avtonomnogo tyagovogo podvizhnogo sostava]. In: VNIIZhT – to transport. Scientific problems of technical development of railway transport: Proceedings of scientific and practical conference of JSC VNIIZhT. Ed. by A. E. Semechkin. Moscow, Intext publ., 2008, pp. 89–100.
3. Tokuyama, K., Shimada, M., Terasawa, K., Kaneko, T. Practical application of a hybrid drive system for reducing environmental load. Hitachi Review, 2008, Vol. 57, No. 1, pp. 23–27. [Electronic resource]: https://www.hitachi.com/rev/pdf/2008/r2008_01_003.pdf. Last accessed 17.06.2022.
4. Takahashi, H., Kato, T., Ito, T., Gunji, F. Energy storage for traction power supply systems. Hitachi Review, 2008, Vol. 57, No. 1, pp. 28–32. [Electronic resource]: https://www.hitachi.com/rev/pdf/2008/r2008_01_004.pdf. Last accessed 17.06.2022.
5. Titova, T. S., Evstafev, A. M., Izvarin, M. Iu., Sychugov, A. N. Traction rolling stock development perspectives, Part 1. Transport Rossiiskoi Federatsii. Journal about science, practice, economics, 2018, Iss. 6 (79), pp. 40–44. [Electronic resource]: http://rostransport.com/transportrf/download.php?src=/transportrf/pdf/79/1994-831X-2018-6-40-44.pdf. Last accessed 17.06.2022.