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Innovative Development of Transport System using Magnetic Levitation Technology

https://doi.org/10.30932/1992-3252-2019-17-4-36-45

Abstract

Digital transformations in various sectors of the national economy of many countries lead to an increase in demand for not only information, but also innovative technologies in general. Those current trends are fully manifested in largescale technological changes in the field of transport.
At the same time, the contents of tasks reflecting the trend for innovation, the priority of their formulation, as well as implementation mechanisms are determined in the context of socio-economic systems and development strategies of each state, taking into account its geopolitical position, participation in regional associations and organizations, many other factors affecting the nature of decisions made, formation of the strategic management of the innovative development of transport systems.
In Russia, the current public policy in the field of transport is focused on realizing the transit potential, improving the efficiency of transport services, and the level of economic connectivity of the territory through modernization and expansion of transport infrastructure. The solution of such problems, including, inter alia, increasing efficiency and safety of transport, requires introduction of fundamentally new technological solutions using the latest achievements of world science and technology.
The objective of the article is to propose a conceptual approach to inclusion of magnetic levitation in the set of technologies that contribute to strategic development of the transportation system in Russia.
In the context of an actively developing digital economy, the launch of a qualitatively new product on the domestic market, which is magnetic levitation transport systems (MLTS), will be a breakthrough solution in development of the country’s transport system, taking into account a number of key tasks it solves.

About the Authors

A. A. Zaitsev
Emperor Alexander I St. Petersburg State Transport University
Russian Federation

Zaitsev, Anatoly A. – D.Sc. (Economics), professor, head of the scientific and educational center for innovative development of passenger railway transportation

St. Petersburg



Y. V. Sokolova
Emperor Alexander I St. Petersburg State Transport University
Russian Federation

Sokolova, Yana V. – Ph.D. (Eng), deputy head of the scientific and educational center for innovative development of passenger railway transportation

St. Petersburg



T. A. Pantina
Admiral Makarov State University of Maritime and Inland Shipping
Russian Federation

Pantina, Tatyana A. – D.Sc. (Economics), professor, vice-rector for scientific work

St. Petersburg



References

1. Decree of the President of the Russian Federation of 07.05.2018 No. 204 «On national goals and strategic objectives of development of the Russian Federation for the period until 2024» [Ukaz Prezidenta RF ot 07.05.2018 № 204 «O natsionalnykh tselyakh i strategicheskikh zadachakh razvitiya Rossiiskoi Federatsii na period do2024»]. [Electronic resource]: http://kremlin.ru/acts/bank/43027. Last accessed 06.06.2019.

2. On approval of Comprehensive plan for modernization and expansion of the mainline infrastructure for the period until 2024 [Ob utverzhdenii Kompleksnogo plana modernizatsii irasshireniya magistralnoi infrastruktury na period do 2024 goda]. [Electronic resource]: http://government.ru/docs/34297/. Last accessed 06.06.2019.

3. The government was offered a plan for construction of infrastructure for 7 trillion rubles [Pravitelstvu predlozhili plan stroiteltva infrastruktury na 7 trln rublei]. [Electronic resource]: https://www.rbc.ru/economics/20/08/2018/5b76d9759a7947236cf787c2. Last accessed 06.06.2019.

4. Overview of the Russian transport sector in 2017 [Obzor rossiiskogo transportnogo sektora v 2017 godu]. [Electronic resource]: https://home.kpmg/ru/ru/home/insights/2018/04/transport-survey-2017.html. Last accessed 06.06.2019.

5. Overview of cargo transportation industry in Russia. 2018 [Obzor otrasli gruzoperevozok v Rossii. 2018 god]. [Electronic resource]: https://www.ey.com/Publication/vwLUAssets/ey-freight-transportation-survey-2018/$FILE/ey-freight-transportation-survey-2018.pdf. Last accessed 06.06.2019.

6. Bulaeva, A. Loading of export cargo to ports in January–September increased by 6,1 % [Pogruzka eksportnykh gruzov v porty v yanvare-sentyabre vyrosla na 6,1 %]. Gudok [newspaper]. [Electronic resource]: http://www.gudok.ru/news/? ID=1438143. Last accessed 06.06.2019.

7. Guidelines for development of national projects (programs). Approved by the Chairman of the Government of the Russian Federation D. A. Medvedev on June 4, 2018 No. 4072p-P6 [Metodicheskie ukazaniya po razrabotke natsionalnykh proektov (program). Utv. Predsedatelem Pravitelstva RF D. A. Medvedevym 4 iunya 2018 goda № 4072p-P6]. [Electronic resource]: http://docs.cntd.ru/document/550517324. Last accessed 06.06.2019.

8. The integrated project of joint development on the Eurasian continent (scientific and practical concept) [Integralniy proekt solidarnogo razvitiya na Evroaziatskom kontinente (nauchno-prakticheskaya kontseptsiya)]. Report of D.Sc. (Politics) V. I. Yakunin at a meeting of the Presidium of the Russian Academy of Sciences, Moscow, March 11, 2014. [Electronic resource]: https://v-yakunin.livejournal.com/83781.html. Last accessed 06.06.2019.

9. Sadchikov, A. Economist Ivan Starikov: There is a replacement for oil! It is necessary to earn on transit from China to Europe [Est’ zamena nefti! Nado zarabatyvat’ na tranzite iz Kitaya v Evropu]. [Electronic resource]: http://www.gudok.ru/events/detail.php? ID=1358082. Last accessed 06.06.2019.

10. Wenk, M., Kluehspies, J., Blow, L., Fritz, E., Hekler, M., Kircher, R., Witt, M. Practical investigation of future perspectives and limitations of maglev technologies. Transportation Systems and Technology, 2018, Vol. 4, Iss. 3, suppl. 1, рр. 85–104. DOI: 10.17816/transsyst201843s185–104.

11. Zaitsev, A. A., Sokolova, Ya. V. Magnetic levitation t r a n s p o r t s y s t e m f o r c a r g o t r a n s p o r t a t i o n [Magnitolevitatsionnaya transportnaya sistema dlya gruzovykh perevozok]. Trends in economic development of the transport complex of Russia: foresight, forecasts and strategies: proceedings of a national scientific and practical conference, Moscow, Russian University of Transport, 2018, pp. 109–111.

12. Fritz, E., Kluhspies, J., Kircher, R., Witt, M. Energy consumption of track-based high-speed transportation systems: Maglev technologies in comparison with steelwheel-rail [Electronic resource]: www.researchgate.net/publication/328733747_Energy_Consumption_of_TrackBased_High_Speed_Transportation_Systems_Maglev_Technologies_in_Comparison_with_Steel-Wheel-Rail. Last accessed 06.06.2019.

13. Murakami, M., Oyama, T., Fujimoto, H., Taguchi, T., Gotah, S., Shiohara, Y., Koshizuka, N., Tamaka, S. Large levitation force due to flux pinning in Ybacuo superconductors fabricated by melt-powder-melt-growth process. Japanese Journal of Applied Physics, 1990, Vol. 29, Iss. 2–11, рр. 1991–1994. DOI: 10.1143/jjap.29.l1991.

14. Wang, S., Wang, J., Wang, X., Ren, Z., Zeng, Y., Deng, C., Jiang, H., Zhu, M., Lin, G., Xu, Z., Zhu, D., Song, H. The man-loading high-temperature superconducting maglev test vehicle. IEEE Transactions on Applied Superconductivity, 2003, Vol. 13, Iss. 2, pp. 2134–2137. DOI: 10.1109/tasc.2003.813017.

15. Deng, Z., Zhang, W., Zheng, J., Wang, B., Ren,Y., Zheng, X., Zhang, J. A High-temperature superconducting maglev – evacuated tube transport (HTS Maglev–ETT) test system. IEEE Transactions on Applied Superconductivity, 2017, Vol. 27, Iss. 6, pp. 1–8. DOI: 10.1109/tasc.2017.2716842.


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Zaitsev A.A., Sokolova Y.V., Pantina T.A. Innovative Development of Transport System using Magnetic Levitation Technology. World of Transport and Transportation. 2019;17(4):36-45. https://doi.org/10.30932/1992-3252-2019-17-4-36-45

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ISSN 1992-3252 (Print)