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Evaluation of Ride Comfort in a Railway Passenger Vehicle with Integrated Vehicle and Human Body Bond Graph Model

机译:结合人体键图模型的铁路客车平顺性评价。

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Ride comfort is the level of comfort sensed by the passengers when they are continuously exposed to the vibration and noise. To diminish the vibration level, air springs are used in the secondary suspension system instead of coil springs, especially in the modern railway vehicles. This article focuses on the modeling of Nishimura air spring with non-linear damper and human biodynamic (bio-mechanical) model by using multi-energy domain modeling approach, bond graph. The car body of the railway vehicle is treated as a beam and the first five modes including three flexible modes are considered in the model. We use International Organization for Standardization 2631 for evaluating ride comfort for different durations of the travel time (1 h, 2.5 h, 4 h and 8 h) on flexible and irregular tracks.
机译:乘坐舒适度是指乘客不断受到振动和噪音影响时所感觉到的舒适度。为了减小振动水平,在二级悬架系统中使用了空气弹簧,而不是螺旋弹簧,尤其是在现代铁路车辆中。本文主要通过使用多能量域建模方法,键合图,利用非线性阻尼器和人体生物力学(生物力学)模型对西村空气弹簧进行建模。将铁路车辆的车体视为梁,并在模型中考虑了包括五个灵活模式在内的前五个模式。我们使用国际标准化组织2631来评估在不规则和不规则轨道上不同行驶时间(1小时,2.5小时,4小时和8小时)的乘坐舒适性。

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