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Ride comfort performance of different active suspension systems

机译:不同主动悬挂系统的乘坐舒适性

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This paper presents a comparative of different active and semi-active suspension systems in order to research the improvement in ride comfort and handling stability compared with the equivalent passive systems. The two-degrees-of-freedom model (quarter-car model) is employed in the analysis of seven different active suspension control strategies: LQR-LQG, Robust design, Kalman filter, Skyhook damper, Pole-assignment, Neural network and Fuzzy logic. Computer simulations of the different active models and the equivalent passive systems are performed to obtain the vertical acceleration of the sprung mass and the vertical wheel load variation. The vertical acceleration of the sprung mass is processed to evaluate the ride comfort behaviour and the vertical wheel load variation is used to evaluate the handling stability of the different active suspension control systems.
机译:本文对不同的主动和半主动悬架系统进行了比较,以研究与同等被动系统相比在乘坐舒适性和操纵稳定性方面的改进。两自由度模型(四分之一汽车模型)用于分析七个不同的主动悬架控制策略:LQR-LQG,鲁棒设计,卡尔曼滤波器,天钩阻尼器,极点分配,神经网络和模糊逻辑。对不同的主动模型和等效的被动系统进行计算机仿真,以获取簧载质量的垂直加速度和垂直车轮负载变化。处理弹簧悬挂质量的垂直加速度以评估乘坐舒适性,并使用垂直车轮负载变化来评估不同主动悬挂控制系统的操纵稳定性。

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