Vibrations and stability of motion of a maglev vehicle along straight and curved sections of a plane track structure

Abstract

Based on the solution of differential equations of motion for the vehicle of the unconventionally designed maglev system developed, which features four lines of superconducting magnets on the vehicle and two lines of track contours laid 1 m apart on a plane track structure, the vibrations of the vehicle and the stability of its levitated motion along straight and curved track sections of constant and variable curvature are estimated. The aim of this paper is to work out recommendations for the development of a new maglev system. The novelty lies in that a plane track structure and two lines of track contours can be used in the maglev system. It is shown that at appropriate values of the basic parameters of the system the vehicle exhibits a stable levitated motion in straight track sections in a wide range of speeds, while for curved track sections the speed is limited by the admissible lateral acceleration of the vehicle body. The advisability of using the maglev system developed is demonstrated.

Authors and Affiliations

M. Radchenko, O. Zvonareva, T. Kuznetsova

Keywords

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  • EP ID EP344948
  • DOI -
  • Views 91
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How To Cite

M. Radchenko, O. Zvonareva, T. Kuznetsova (2017). Vibrations and stability of motion of a maglev vehicle along straight and curved sections of a plane track structure. Технічна механіка, Техническая механика, Technical Mechanics, 3(3), 84-89. https://europub.co.uk./articles/-A-344948