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A semi-active vehicle suspension based on pneumatic springs and magnetorheological dampers

机译:基于气动弹簧和磁流变阻尼器的半主动车辆悬架

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摘要

Semi-active and active suspensions can improve both ride comfort and handling compared to passive suspensions. The authors have proposed a suspension comprising a pneumatic system capable of changing the stiffness of the suspension and a semi-active magnetorheological damper capable of controlling the suspension damping. Eight configurations of this magnetorheological/pneumatic suspension result from combining two possible stiffnesses (compliant and stiff) and four possible means of producing damping (constant low, constant high, on-off skyhook control and on-off balance control). The minimization of a cost function, which considers both ride comfort and handling, leads to decision maps which indicate the most appropriate configuration depending on vehicle velocity and two pieces of information about the road: the international roughness index and the curve radius. All this information can be gathered from a GPS system and toggling between set-ups is fast, efficient, and easily done by simply opening or closing pipes in the pneumatic system and modifying the current supply in the magnetorheological dampers. The proposed magnetorheological/pneumatic suspension achieves the same roll angle levels as in a comparable passive vehicle while improving ride comfort by reducing acceleration by up to 30%.
机译:与被动悬架相比,半主动和主动悬架可以改善速度舒适和处理。作者提出了一种悬浮液,该悬浮液包括能够改变悬架的刚度和能够控制悬架阻尼的半主动磁流变测压器的气动系统。该磁流出/气动悬浮液的八种构造是组合两个可能的刚度(柔顺且刚性)和四种可能的产生阻尼装置(恒定的低,恒定的高,OFF OFF Skyhook控制和开关平衡控制)。最小化成本函数,其考虑乘坐舒适性和处理,导致决策地图,这表明最适合的配置,这取决于车辆速度和关于道路的两条信息:国际粗糙度指数和曲线半径。所有这些信息都可以从GPS系统收集,并通过简单地打开或关闭气动系统中的管道并在磁电热管道中改变电流供应,切换设置快速,高效,轻松完成。所提出的磁流学/气动悬浮液实现与相当的无源车辆中相同的辊角度水平,同时通过将加速度降低至30%来提高速度舒适度。

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