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Influence of Wheel-Rail Contact Stiffness on the H 2 Controlled Active Suspension Design

机译:轮轨接触刚度对H 2 控制的主动悬架设计的影响

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In this work, the mathemtical model of a railway passenger car with conventional and radial-elastic wheels is analyzed. Stochastic excitations are applied to the wheelsets. The local elasticity between the wheel and the rail is modelled by a linearized stiffness behaviour due to geometrical effects to simplify the controller design procedure for H 2 analysis. An optimization of the vertical dynamics is performed by reducing the the H 2 norms of the dynamic wheel forces while keeping the RMS gain of carbody accelerations at a constant level. It is seen that the controller performs well on the low frequency range where the ride comfort is more pronounced and partially on the high frequency range to suppress the environmental ground vibrations and structure-borne noise.
机译:在这项工作中,分析了具有常规车轮和径向弹性车轮的铁路客车的数学模型。随机激励应用于轮对。车轮和轨道之间的局部弹性通过线性刚度行为(由于几何效应)来建模,以简化H 2分析的控制器设计过程。通过减小动态车轮力的H 2范数,同时将车身加速度的RMS增益保持在恒定水平,可以实现垂直动力学的优化。可以看出,该控制器在行驶舒适性更为显着的低频范围内表现出色,而在高频范围上则表现出部分优势,可抑制环境地面振动和结构噪声。

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