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Vibration and handling stability analysis of articulated vehicle with hydraulically interconnected suspension

机译:具有液压互连悬架的铰接式车辆的振动和处理稳定性分析

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摘要

Anti-roll hydraulically interconnected suspension (HIS) due to its roll-vibration stiffness and damping performance has been studied and applied in passenger vehicles, buses, and tri-axle straight vehicles. However, very few investigations have been made on six-axle articulated vehicles with the HIS system. Moreover, rollover accidents involving articulated vehicles cause severe casualties, which have attracted wide attention in the vehicle safety field. This calls for a design of a new suspension control technique to improve the handling stability performance at a lower cost and with less energy consumption. This paper presents an anti-roll HIS system control technique to improve the handling stability of a six-axle tractor-semitrailer with nonlinear uncertain parameters. Firstly, the HIS model for leaf-spring suspension of a half semitrailer is established by means of the linear transfer matrix method. Secondly, the power spectral density function is analyzed to validate the obtained model, and equivalent stiffness and damping are computed using natural frequency. Thirdly, six-axle vehicle equations with the HIS model are established considering the equivalent stiffness and damping parameter as the medium. Finally, numerical simulation results are provided and compared with the original vehicle. Dynamic response of the proposed technique is assessed by analyzing roll stability, lateral stability, yaw stability, and articulation stability. The results show that the proposed control technique can effectively improve the handling performance of an articulated vehicle.
机译:已经研究了抗辊液压互连的悬架(他)由于其卷振刚度和阻尼性能,并应用于乘用车,公共汽车和三轴直辆车。但是,在六轴铰接式车辆上具有很少的调查,其中六轴铰接式车辆。此外,涉及铰接车辆的翻转事故导致严重伤亡,这引起了车辆安全领域的广泛关注。这呼吁设计新的悬架控制技术,以以较低的成本和较少的能耗来改善处理稳定性性能。本文提出了一种防滚动系统控制技术,提高了具有非线性不确定参数的六轴拖拉机 - 半拖射器的处理稳定性。首先,通过线性转移矩阵法建立了半闪光灯的叶弹簧悬架模型。其次,分析功率谱密度函数以验证所获得的模型,并且使用自然频率计算等效的刚度和阻尼。第三,考虑到等效刚度和阻尼参数作为介质,建立具有他模型的六轴车辆方程。最后,提供了数值模拟结果并与原始车辆进行了比较。通过分析辊稳定性,横向稳定性,偏航稳定性和铰接稳定性来评估所提出的技术的动态响应。结果表明,所提出的控制技术可以有效地改善铰接车辆的处理性能。

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