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Study on Levitation Characteristics of the Superconducting EDS Maglev Vehicle

机译:超导EDS Maglev车辆悬浮特性研究

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The levitation and guidance system of the superconducting electrodynamic levitation(EDS) maglev vehicle includes superconducting magnets and 8-shaped levitation coils. Based on the dynamic theory, the mathematical model of the levitation system is established. Levitation characteristics of the superconducting EDS maglev vehicle are analyzed. The levitation force and guiding force of the vehicle will gradually increase to saturation as the speed increases, and the magnetic resistance will first increase and then decrease. The magnetic resistance is much smaller than the levitation force, and the buoyancy-to-resistance ratio is large. It proves that the vehicle has a good buoyancy-to- resistance ratio when running at high speed. And the levitation stiffness is conducive to the stable operation of the vehicle. It is also concluded that as the vehicle sinks, the levitation force will first increase and then decrease.
机译:超导电动力悬浮(EDS)Maglev车辆的悬浮和引导系统包括超导磁体和8形悬浮线圈。 基于动态理论,建立了悬浮系统的数学模型。 分析超导EDS Maglev载体的悬浮特性。 随着速度的增加,车辆的悬浮力和引导力将逐渐增加到饱和度,并且磁阻将首先增加然后减少。 磁阻远小于升力力,浮力与阻力比大。 它证明,在高速运行时,车辆具有良好的浮力 - 阻力比。 并且悬浮刚度有利于车辆的稳定运行。 它还结论,随着车辆水槽,悬浮力将首先增加然后减少。

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