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Hydraulic Actuation System with Active Control for the Lateral Suspensions of High Speed Trains

机译:主动控制的液压传动系统,用于高速列车的横向悬架

摘要

High speed trains normally use actively controlled pneumatic systems to recenter the carbody with respect to the bogie when the train negotiates a curve. Pneumatic systems are used because of their softness, which adds a little contribution to the elastic force generated by the mechanical springs of the lateral suspension system, thereby allowing the neccessary dynamic isolation between carbody and bogie. Howeve, pneumatic systems have the drawbacks of large dimensions and slow response, often accompanied by a few damped oscillations. An innovative solution was developed which makes use of hydraulic actuators providing them with artificial compliance generated by an appropriate control, hence making hydraulic actuators suitable for this application. A carbody centering system is thus obtained presenting fast response, small volume and a softness comparable to that of a pneumatic system. The optimal control law for this system was defined, the system dynamic characteristics were analyzed and a technological demonstrator was built to assess the system merits. The paper outlines the theoretical grounds for the system control, its performance and the most significant results obtained during a test campaign conducted on the technological demonstrator.
机译:高速火车通常使用主动控制的气动系统,以在火车通过弯道时使车身相对于转向架重新定位。使用气动系统是因为它们的柔软性,这对由侧悬架系统的机械弹簧产生的弹力增加了一点贡献,从而允许在车身和转向架之间进行必要的动态隔离。但是,气动系统的缺点是尺寸大,响应速度慢,通常伴随着一些阻尼振荡。开发了一种创新的解决方案,该解决方案利用液压致动器,通过适当的控制为它们提供人为的柔顺性,因此使液压致动器适合该应用。因此,获得了车身定心系统,其具有与气动系统相当的响应速度快,体积小且柔软度高。定义了该系统的最优控制律,分析了系统的动态特性,并建立了一个技术演示器来评估系统的优点。本文概述了系统控制的理论基础,其性能以及在技术演示者进行的测试活动中获得的最重要的结果。

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