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Hardware-in-the-loop simulation of magnetorheological dampers for vehicle suspension systems

机译:车辆悬架系统磁流变阻尼器的硬件仿真

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摘要

Magnetorheological (MR) fluids provide an elegant means to enhance vibration control in primary vehicle suspensions. Such fluids can rapidly modify their flow characteristics in response to a magnetic field, so they can be used to create semi-active dampers. However, the behaviour of MR dampers is inherently non-linear and as a consequence, the choice of an effective control strategy remains an unresolved problem. Previous research has developed a method to linearize the damper's force/velocity response, to allow implementation of classical control techniques. In the present study, this strategy is used to implement skyhook damping laws within primary automotive suspensions. To simulate the vehicle suspension, a two-degree-of-freedom quarter car model is used, which is excited by realistic road profiles. The controller performance is investigated experimentally using the hardware-in-the-loop-simulation (HILS) method. This experimental method is described in detail and its performance is validated against numerical simulations for a simplified problem. The present authors demonstrate that feedback linearization can provide significant performance enhancements in terms of passenger comfort, road holding, and suspension working space compared with other control strategies. Furthermore, feedback linearization is shown to desensitize the controller to uncertainties in the input excitation such as changes in severity of the road surface roughness.
机译:磁流变(MR)流体提供了一种优雅的方法来增强车辆主悬架的振动控制。这样的流体可以响应于磁场迅速地改变其流动特性,因此它们可以用于制造半主动阻尼器。但是,MR阻尼器的特性本质上是非线性的,因此,有效控制策略的选择仍然是一个未解决的问题。先前的研究已经开发出一种使阻尼器的力/速度响应线性化的方法,以实现经典的控制技术。在本研究中,此策略用于在主要汽车悬架中实施天钩阻尼定律。为了模拟车辆悬架,使用了两自由度四分之一汽车模型,该模型受到现实道路轮廓的激发。使用硬件在环仿真(HILS)方法对控制器的性能进行了实验研究。详细描述了这种实验方法,并针对简化问题,通过数值模拟验证了其性能。本文作者证明,与其他控制策略相比,反馈线性化可以在乘客舒适度,道路保持和悬架工作空间方面提供显着的性能增强。此外,反馈线性化可以使控制器对输入激励的不确定性(如路面粗糙度的严重性变化)不敏感。

著录项

  • 作者

    D. C. Batterbee; N. D. Sims;

  • 作者单位
  • 年度 2007
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"english","id":9}
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