首页> 外文会议>International conference on railway engineering design and operation >SUPPRESSION OF VERTICAL VIBRATION IN RAILWAY VEHICLE CARBODIES THROUGH CONTROL OF DAMPING FORCE IN PRIMARY SUSPENSION: PRESENTATION OF RESULTS FROM RUNNING TESTS WITH METER-GAUGE CAR ON A SECONDARY LINE
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SUPPRESSION OF VERTICAL VIBRATION IN RAILWAY VEHICLE CARBODIES THROUGH CONTROL OF DAMPING FORCE IN PRIMARY SUSPENSION: PRESENTATION OF RESULTS FROM RUNNING TESTS WITH METER-GAUGE CAR ON A SECONDARY LINE

机译:抑制初级悬架中阻尼力的铁路车辆携带术中的垂直振动:用米仪在次级线上运行试验结果的介绍

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To improve vertical ride comfort in railway vehicles, the suppression of vertical bending-mode vibration and rigid-body-mode vibration in the carbody is essential. Primary suspension damping control systems, designed to reduce bending mode vibrations in carbodies for high-speed trains, have been proposed in the past. These systems consist of variable vertical dampers affixed to the primary suspension, accelerometers attached to the bogie frames, and a controller. Results from vehicle running tests carried out on a number of Shinkansen lines demonstrated that these systems reduced the power spectral density (PSD) peak value of vertical carbody vibration accelerations in the first-bending-mode by 80 per cent compared to when the system was not used. This paper reports on the application of this system to a meter-gauged vehicle. Vehicle running tests were carried out on a secondary meter-gauge line at moderately high running speeds (about 100 km/h or lower). Test results showed that the system reduced the PSD peak of vertical vibration accelerations stemming from bending-mode vibrations of the carbody by almost 90 per cent thanks to an LQG controller tuned for reducing bending-mode vibrations. When vehicles run at low speed (about 60 km/h) on secondary lines, the rigid-body-mode vibrations of the carbody in the 1-2 Hz frequency range tend to increase from time to time. The system was therefore also applied to reduce these vibrations. Results from vehicle running tests applying the LQG controller that had been re-tuned for reducing rigid-body-mode vibrations, showed that the PSD peak in vibration accelerations at 1.2 Hz was reduced by half.
机译:为了提高铁路车辆垂直乘坐舒适性,在车身中抑制垂直弯曲模式振动和刚体模式振动至关重要。过去,初级悬架阻尼控制系统旨在减少用于高速列车的碳结构中的弯曲模式振动,已经提出。这些系统由固定在主悬架的可变垂直阻尼器组成,加速度计附接到转向架框架和控制器。在许多新干线线路上进行的车辆运行测试证明,与系统没有时,这些系统在第一弯曲模式下将垂直车体振动加速的功率谱密度(PSD)峰值降低了80%用过的。本文报告了该系统将该系统应用于仪表测量的车辆。车辆运行测试在中度高速速度(约100km / h或更低)上进行二次仪表仪表。测试结果表明,由于LQG控制器调节以减少弯曲模式振动,系统降低了垂直振动加速度的PSD峰值垂直振动加速度的垂直振动加速度的PSD峰值近90%。当车辆以低速(约60km / h)上的次级线路运行时,在1-2赫兹频率范围内的滑动体的刚体模式振动往往不时地增加。因此,该系统也适用于减少这些振动。车辆运行试验的结果应用已重新调谐的LQG控制器以减少刚体模式振动,表明振动加速度为1.2Hz的PSD峰值减少了一半。

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