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IMPROVED CURVING PERFORMANCE FOR TWO-AXLE RAIL VEHICLES WITH ACTUATED SOLID WHEELSETS USING H_∞ CONTROL

机译:改进了使用H_∞控制的双轴轨道车辆的弯曲性能

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Application of active suspension on passenger vehicles has engaged many vehicle dynamics specialists in recent years. The technology can be used for different purposes including improving comfort, stability or wear behavior. Despite these benefits, industries do not yet find these technologies attractive enough. One reason is that the achieved benefits do not pay back for itself since the vehicle will become more expensive. Therefore, more steps should be taken to make active suspension attractive. One such a step can be using active suspension for resolving classical limitations in rail vehicle dynamics. An example of this is a non-bogie rail vehicle with two axles. One of the problems associated with these vehicles is their short axle distance limiting the length of the vehicle. The short axle distance is partly for limiting wheel-rail wear. This paper describes how to reduce wheel wear through achieving better wheelset steering in curves so that longer axle distances can be allowed. Wheelset steering is performed by H_∞, control strategy.
机译:近年来,在乘用车上的主动悬架在乘用车上占有了许多车辆动态专家。该技术可用于不同的目的,包括提高舒适性,稳定性或磨损行为。尽管有这些好处,但行业尚未发现这些技术足够有吸引力。一个原因是,由于车辆变得更加昂贵,因此取得的益处不会自行偿还。因此,应采取更多步骤以使主动悬浮液吸引。一个这样的步骤可以使用主动悬架来解决轨道车辆动态的经典限制。这是一个具有两个轴的非转向架轨道车辆。与这些车辆相关的问题之一是它们的短轴距离限制了车辆的长度。短轴距离部分用于限制轮轨磨损。本文介绍了如何通过在曲线中实现更好的轮子转向来减少车轮磨损,从而可以允许更长的轴距离。轮辋转向由H_‖执行,控制策略。

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