Study on the Damping Characteristics of Superconducting Electrodynamic Suspension Using a Field-Circuit-Motion Coupled Model
ID:293 Submission ID:293 View Protection:PUBLIC Updated Time:2021-06-18 18:15:39 Hits:813 Poster Presentation

Start Time:2021-07-02 15:51 (Asia/Shanghai)

Duration:1min

Session:[SP] Poster Session » [P2] Poster Session 3 & 4

Abstract
The purpose of this paper is to study the vertical and lateral damping characteristics of the superconducting electrodynamic suspension (EDS) system. We used a field-circuit-motion coupled model to perform the analysis and a moving interval acceleration algorithm was implemented to speed up the calculation. Moreover, we also introduced a 3-D numerical model using finite element method (FEM). The validity of the analytic model was confirmed by the comparison of the measured and calculated data. Based on the model, we studied the influence of the train speed, vibration amplitude and vibration frequency on the vertical and lateral average damping coefficients. This work could be helpful for vibration control design of the EDS systems, such as vacuum tube high-speed flying train, superconducting maglev, space magnetic levitation electromagnetic launch and so on
Keywords
EDS, analytical model, FEM model, damping coefficient, analysis
Speaker
Daoyu Hu
Senior Engineer Institute of Magnetic Levitation and Electromagnetic Propulsion; China Aerospace Science & Industry Crop.

Submission Author
Daoyu Hu Institute of Magnetic Levitation and Electromagnetic Propulsion; China Aerospace Science & Industry Crop.
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