2021•IEEE Transactions on Applied SuperconductivityRequires access

Overview of Electrodynamic Levitation Technique Applied to Maglev Vehicles

Thais Nascimento Franca, Hongfu Shi, Zigang Deng, Richard Magdalena Stephan

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Abstract

Magnetic levitation vehicles are means of transport that move without touching the ground by the action of magnetic forces. The electrodynamic levitation technique uses the repulsive forces that arise from the interaction between any variable magnetic field and a good electrical conductor. This work aims to organize in a didactic manner the main topics involving electrodynamic suspension applied to Maglev vehicles, thus contributing to the understanding of the technique.

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What this paper is about

Magnetic levitation vehicles are means of transport that move without touching the ground by the action of magnetic forces. The electrodynamic levitation technique uses the repulsive forces that arise from the interaction between any variable magnetic field and a good electrical conductor. This work aims to organize in a didactic manner the main topics involving electrodynamic suspension applied to Maglev vehicles, thus contributing to the understanding of the technique.

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OpenAlex reports 21 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Magnetic levitation vehicles are means of transport that move without touching the ground by the action of magnetic forces. The electrodynamic levitation technique uses the repulsive forces that arise from the interaction between any variable magnetic field and a good electrical conductor. This work aims to organize in a didactic manner the main topics involving electrodynamic suspension applied to Maglev vehicles, thus contributing to the understanding of the technique.

Key concepts: Maglev, Magnetic levitation, Levitation, Electrodynamic suspension, Electromagnetic suspension, Magnetic field, Suspension (topology), Conductor

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