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Effect of the Active Damper Coils of the Superconducting Magnetically Levitated Bogie in Case of Acceleration

机译:加速情况下超导磁悬浮转向架有源阻尼线圈的作用

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Numerical simulation of the superconducting magnetically levitated bogie (JR Maglev) has been studied. Electrodynamic suspension is used for levitation and guidance. Although this suspension needs no gap control, damping factor of the system is shown to be small. Therefore additional damping system is considered. The passive and the active damper coil system are introduced to increase damping of the levitation system. Running simulation of the bogie when the train accelerates is undertaken. The passive damper coil decreases oscillation of the bogie. Although the active damper system shows larger effect, it needs much electric power. The passive damper coil shows enough damping factor in case of normal acceleration.
机译:研究了超导磁悬浮转向架(JR Maglev)的数值模拟。电动悬架用于悬浮和引导。尽管该悬架不需要间隙控制,但是系统的阻尼系数显示为很小。因此,需要考虑附加的阻尼系统。引入了无源和有源阻尼线圈系统,以增加悬浮系统的阻尼。列车加速时进行转向架的运行模拟。无源阻尼线圈可降低转向架的振动。尽管主动阻尼器系统显示出更大的效果,但它需要大量的电能。在正常加速的情况下,无源阻尼线圈显示足够的阻尼系数。

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