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A Study on the Dynamic Behavior of Wheel-Type Train Propelled by Superconducting Linear Synchronous Motor

机译:超导线性同步电动机驱动的轮式列车动力特性研究

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This paper deals with a study on the dynamic behavior of 600 km/h wheel-type train propelled by superconducting linear synchronous motor (LSM). This train is of a traditional wheel-on-rail type with traction motors on wheel-bogies. However, for the 600 km/h speed, on the both sides of each vehicle, superconducting LSMs are attached and the ground coils are installed on the guideway. In this case, the guideway irregularities act as disturbance to the vehicle causing deterioration of ride comfort. And besides thrust force, the normal force could be created in superconducting LSM control, which influences vehicle dynamics during running. In this study, to examine the effect of guideway irregularity and normal force on dynamic behavior of proposed train, the vehicle dynamic model is driven and frequency analysis is performed through simulation. The simulation results show that the lateral directional acceleration is mainly influential to ride comfort; however this could be reduced effectively by electromagnetic damping force from linear generator. It is also shown that the normal force effect from superconducting LSM control is limited even though the attractive normal force acts favorably to ride comfort.
机译:本文研究了由超导线性同步电动机(LSM)推动的600 km / h轮式列车的动态行为。这列火车是传统的轮轨式,在转向架上装有牵引电动机。但是,对于600 km / h的速度,每辆车的两侧都装有超导LSM,接地线圈安装在导轨上。在这种情况下,导轨的不平整会对车辆造成干扰,导致乘坐舒适性下降。除推力外,还可在超导LSM控制中产生法向力,这会影响行驶过程中的车辆动力学。在这项研究中,为了研究导轨不规则和法向力对拟议列车动力行为的影响,驱动车辆动力学模型并通过仿真进行频率分析。仿真结果表明,横向加速度主要影响乘坐舒适性。然而,这可以通过线性发电机的电磁阻尼力有效地降低。还显示出,即使有吸引力的法向力有利于乘坐舒适性,来自超导LSM控制的法向力效果也受到限制。

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