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Response of high speed EDS maglev train moving on a suspended guideway shaken by horizontal earthquake

机译:高速EDS Maglev火车在水平地震摇动悬挂导轨上移动的高速EDS Maglev火车

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This paper presented a computational framework of interaction analysis for an EDS (electro-dynamic suspension) maglev train traveling over a suspension bridge shaken by horizontal earthquakes. The suspended guideway girder is modeled as a single-span suspended beam and the maglev train traveling over it as a series of maglev masses. To tune the magnetic forces in a maglev suspension system, an on-board hybrid LQR+PID controller is designed to control the dynamic response of a running maglev mass. Then the governing equations of motion for the suspended beam associated with all the controlled maglev masses are transformed into a set of generalized equations by Galerkin's method, and solved using an incremental-iterative procedure. Numerical investigations demonstrate that when a controlled maglev train travels over a suspended guideway shaken by horizontal earthquakes, the proposed hybrid controller has ability to reduce the vehicle's acceleration response for ride quality.
机译:本文介绍了对由水平地震摇动的悬挂桥的吊桥(电动动力悬架)Maglev火车的交互分析框架。悬挂导轨梁被建模为单跨悬挂式梁和磁悬浮列车作为一系列Maglev群众。为了调整Maglev悬架系统中的磁力,车载混合式LQR + PID控制器旨在控制运行Maglev质量的动态响应。然后,通过Galerkin的方法将与所有受控Maglev质量相关联的悬浮光束的动作的控制方程被转换为一组广义方程,并使用增量迭代过程进行解决。数值调查表明,当受控的Maglev火车通过水平地震摇动的悬挂导轨上行驶时,所提出的混合动力控制器能够降低车辆的加速度响应以获得乘坐质量。

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