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首页> 外文期刊>Quarterly Report of RTRI >Reduction of Vibrations in Maglev Vehicles Using Active Primary and Secondary Suspension Control
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Reduction of Vibrations in Maglev Vehicles Using Active Primary and Secondary Suspension Control

机译:主动和主动悬架控制可减少磁悬浮车辆的振动

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In the superconducting magnetically levitated transport (Maglev) system, the vehicles travel at high speeds of over 500 km/h and have car bodies that are light in weight, resulting in vibrations that affect the ride comfort. Vibration reduction methods discussed in this report include prior examinations of superconducting magnets resiliently mounted on to the bogie frame to reduce vibrations in the primary suspension, and semi-active vibration control of the secondary suspension. The authors performed simulations applying electromagnetic forces from a linear generator device to control the primary suspension between the bogies and guideway, and controlling actuators in the secondary suspension between the car body and bogies. The results verified the basic effectiveness of combining control methods of the primary and secondary suspension to reduce vehicle vibrations.
机译:在超导磁悬浮运输(Maglev)系统中,车辆以超过500 km / h的速度行驶,并且车身重量轻,从而产生影响乘坐舒适性的振动。本报告中讨论的减振方法包括预先检查弹性安装在转向架框架上的超导磁体,以减少主悬架中的振动,以及对副悬架进行半主动振动控制。作者进行了仿真,这些仿真应用了来自线性发电机设备的电磁力来控制转向架和导轨之间的主悬架,并控制车身和转向架之间的次级悬架中的执行器。结果证明了将一级和二级悬架控制方法相结合以减少车辆振动的基本有效性。

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