Combined Electromagnetic Suspensions with Reduced Energy Consumption for Levitation Vehicles


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Resumo

At present, the development of magnetic levitation transportation is conducted based on electromagnetic and electrodynamic suspensions the technical and commercial implementation of which has been successfully demonstrated in Korea, China, Japan, and other countries. Sources of an electromagnetic field in suspensions can be normally conducting electromagnets, superconducting magnets and high-coercive permanent magnets. The progress made in the development of new magnetic materials (permanent magnets and high-temperature superconductors) opens up prospects for reducing the energy consumption of levitation transport systems. The authors proposed magnets of all three types, which together ensure the functioning of combined electromagnetic suspension, and created scale models of such magnets. The permanent levitation of suspension models with a load is provided. The correctness of technical solutions is confirmed, software created in the Russian Federation allows one to reliably-scale magnetic systems of suspensions. Thus, all the prerequisites have been completed for the next stage of creating full-scale prototypes of effective levitation systems, in particular, a 50-ton cargo platform.

Sobre autores

E. Andreev

Efremov Institute of Electrophysical Apparatus

Autor responsável pela correspondência
Email: sytch@sintez.niiefa.spb.su
Rússia, St. Petersburg, 196641

D. Arslanova

Efremov Institute of Electrophysical Apparatus

Email: sytch@sintez.niiefa.spb.su
Rússia, St. Petersburg, 196641

E. Akhmetzyanova

Efremov Institute of Electrophysical Apparatus

Email: sytch@sintez.niiefa.spb.su
Rússia, St. Petersburg, 196641

A. Bazarov

Efremov Institute of Electrophysical Apparatus

Email: sytch@sintez.niiefa.spb.su
Rússia, St. Petersburg, 196641

V. Vasil’ev

Efremov Institute of Electrophysical Apparatus

Email: sytch@sintez.niiefa.spb.su
Rússia, St. Petersburg, 196641

O. Vasil’eva

Efremov Institute of Electrophysical Apparatus

Email: sytch@sintez.niiefa.spb.su
Rússia, St. Petersburg, 196641

M. Verkhoturov

St. Petersburg State University

Email: sytch@sintez.niiefa.spb.su
Rússia, St. Petersburg, 199034

E. Gapionok

Efremov Institute of Electrophysical Apparatus

Email: sytch@sintez.niiefa.spb.su
Rússia, St. Petersburg, 196641

A. Demina

Efremov Institute of Electrophysical Apparatus

Email: sytch@sintez.niiefa.spb.su
Rússia, St. Petersburg, 196641

S. Zavadskii

St. Petersburg State University

Email: sytch@sintez.niiefa.spb.su
Rússia, St. Petersburg, 199034

M. Zenkevich

Khrulev Academy of Material and Technical Support

Email: sytch@sintez.niiefa.spb.su
Rússia, St. Petersburg, 199034

M. Kaparkova

Efremov Institute of Electrophysical Apparatus

Email: sytch@sintez.niiefa.spb.su
Rússia, St. Petersburg, 196641

V. Kuz’menkov

Efremov Institute of Electrophysical Apparatus

Email: sytch@sintez.niiefa.spb.su
Rússia, St. Petersburg, 196641

A. Labusov

Efremov Institute of Electrophysical Apparatus

Email: sytch@sintez.niiefa.spb.su
Rússia, St. Petersburg, 196641

M. Larionov

Efremov Institute of Electrophysical Apparatus

Email: sytch@sintez.niiefa.spb.su
Rússia, St. Petersburg, 196641

M. Manzuk

Efremov Institute of Electrophysical Apparatus

Email: sytch@sintez.niiefa.spb.su
Rússia, St. Petersburg, 196641

A. Mizintsev

OOO NIIEFA-ENERGO

Email: sytch@sintez.niiefa.spb.su
Rússia, St. Petersburg, 196641

A. Nezhentsev

Efremov Institute of Electrophysical Apparatus

Email: sytch@sintez.niiefa.spb.su
Rússia, St. Petersburg, 196641

D. Ovsyannikov

St. Petersburg State University

Email: sytch@sintez.niiefa.spb.su
Rússia, St. Petersburg, 199034

A. Ovsyannikov

St. Petersburg State University

Email: sytch@sintez.niiefa.spb.su
Rússia, St. Petersburg, 199034

M. Khokhlov

Efremov Institute of Electrophysical Apparatus

Email: sytch@sintez.niiefa.spb.su
Rússia, St. Petersburg, 196641


Declaração de direitos autorais © Pleiades Publishing, Ltd., 2019

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