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Applications of the dynamic circuit theory to Maglev suspension systems

机译:动态电路理论在磁悬浮系统中的应用

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The applications of dynamic circuit theory to electrodynamic suspension (EDS) systems are discussed. Emphasis is placed on the loop-shaped coil and the figure-eight-shaped null-flux coil suspension systems. Mathematical models, including very general force expressions that can be used for the development of computer codes, are provided for each of these suspension systems. The general applications and advantages of the dynamic circuit model are summarized. The transient and dynamic analysis and computer simulation of Maglev systems are emphasized. The method can be applied to many EDS Maglev design concepts. It is also suited for the computation of the performance of Maglev propulsion systems. Numerical examples are presented to demonstrate the capability of the model.
机译:讨论了动态电路理论在电动悬架(EDS)系统中的应用。重点放在环形线圈和八字形零通量线圈悬挂系统上。为这些悬架系统中的每一个提供了数学模型,包括可用于开发计算机代码的非常通用的力表达式。总结了动态电路模型的一般应用和优点。强调了磁悬浮系统的瞬态和动态分析以及计算机仿真。该方法可以应用于许多EDS磁悬浮设计概念。它还适用于磁悬浮推进系统性能的计算。数值例子表明了该模型的功能。

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