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Improvement of Bus Ride Comfort via Active Suspension and Connected Dampers

机译:通过主动悬架和连接的阻尼器改进公共汽车骑行舒适度

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The paper deals with a theoretical study to present a new sort of the buses suspension systems employs a hydraulic connection between the front and rear dampers together with active suspension actuator at the front axle. The theoretical investigation based on a half vehicle model of the bus suspension system includes the engine mounting system. The hydraulic connection between the front and rear dampers is created according to the capillary tubes theory. Furthermore, the active suspension system control algorithm based on the optimal control theory is derived. The Genetic Algorithm optimization routine is applied to generate the active suspension control algorithm parameters. A comparison between the connected dampers suspension system, active suspension system, active-connected dampers suspension system, and the passive suspension system in terms of ride comfort and road holding at constant suspension working space is performed. The results showed that, the proposed active-connected dampers suspension system and active suspension system provides significant improvements in both ride comfort and road holding. Furthermore, the connected dampers suspension system has a preview control effect on the rear ride quality.
机译:本文涉及一种理论研究,以提出新的公共汽车悬架系统采用前后阻尼器之间的液压连接在前轴上与主动悬架致动器一起使用。基于总线悬架系统的半车型的理论研究包括发动机安装系统。前后阻尼器之间的液压连接是根据毛细管理论产生的。此外,推导了基于最优控制理论的主动悬架系统控制算法。遗传算法优化例程应用于生成主动悬架控制算法参数。在乘坐舒适度和恒定悬架工作空间处,连接阻尼器悬架系统,主动悬架系统,有源连接的阻尼器悬架系统和被动悬架系统之间的比较。结果表明,建议的主动连接的阻尼器悬架系统和主动悬架系统在乘坐舒适和道路持有方面提供了显着的改进。此外,连接的阻尼器悬架系统对后乘速度质量具有预览控制效果。

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