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Development and evaluation of a versatile semi-active suspension system for high-speed railway vehicles

机译:高速铁路车辆多功能半主动悬架系统的开发和评估

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With the increase in speed of high-speed trains, their vibration will become fiercer and fiercer, especially when the lateral resonance of the car body occurs. This paper develops a versatile semi-active suspension system with variable stiffness (VS) magnetorheological elastomer (MRE) isolators and variable damping (VD) magnetorheological (MR) dampers for high-speed trains, aiming to improve ride comfort by avoiding car body resonance and dissipating vibration energy. As the first step, a multifunction VSVD semi-active suspension system for high-speed railway vehicles was designed and prototyped, including four VS-MRE isolators and two VD-MR dampers. After that, a scaled train model, composing of a car body and a secondary lateral suspension system was designed and built to evaluate the performance of the new VSVD suspension system; a control strategy based on short-time Fourier transform (STFT) and sky-hook was proposed to control the new suspension system. Two different excitations, harmonic excitation and random excitation, were applied to evaluate the train's VSVD suspension. As a comparison, four alternative suspension systems, including passive-off suspension, passive-on suspension, pure VS suspension, and pure VD suspension were also evaluated. The evaluation results verified that the VSVD suspension of the train can avoid lateral resonance of car body and dissipate the vibration energy efficiently. The comparison verified that the VSVD suspension system outperforms the passive-off suspension, passive-on suspension, pure VS suspension, and pure VD suspension.
机译:随着高速列车速度的增加,它们的振动将变得越来越激烈,尤其是在发生车身的横向共振时。本文为高速列车开发了一种具有可变刚度(VS)磁流变弹性体(MRE)隔离器和可变阻尼(VD)磁流变(MR)阻尼器的多功能半主动悬架系统,旨在通过避免车身共振和振动来提高乘坐舒适性。耗散振动能量。第一步,设计并制作了用于高速铁路车辆的多功能VSVD半主动悬挂系统,包括四个VS-MRE隔离器和两个VD-MR减震器。之后,设计并构建了一个由车身和次级侧向悬架系统组成的比例化火车模型,以评估新型VSVD悬架系统的性能。提出了一种基于短时傅立叶变换(STFT)和天钩的控制策略来控制新的悬架系统。两种不同的激励(谐波激励和随机激励)被应用于评估列车的VSVD悬架。作为比较,还评估了四个替代悬架系统,包括被动关闭悬架,被动开启悬架,纯VS悬架和纯VD悬架。评估结果证明,列车的VSVD悬架可以避免车身的横向共振,并有效地消散振动能量。比较证明,VSVD悬架系统优于被动关闭悬架,被动开启悬架,纯VS悬架和纯VD悬架。

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