An interconnected suspension with adjustable roll and pitch stiffness (IS-ARPS) to enhance anti-roll and anti-dive/squat characteristics

Yukun Lu, Yanjun Huang, Chen Sun, Jiaming Zhong, Amir Khajepour
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Abstract

The suspension system is critical in maintaining vehicle stability in roll and pitch directions. Hydro-pneumatic interconnected suspension systems, in which the suspension struts are connected through hydraulic hoses, flow control valves, and accumulators, have great potential to further enhance anti-roll and anti-pitch characteristics. To address the existing designs’ shortcomings, this study introduces an interconnected suspension with adjustable roll and pitch stiffness (IS-ARPS). It not only eliminates the conventional anti-roll bars but also enables adjustment of roll stiffness depending on the driving and vehicle load conditions. In the pitch direction, the IS-ARPS provides an additional amount of pitch stiffness to reduce the dive/squat during braking/acceleration. The mathematical modeling of the IS-ARPS is also straightforward, requiring less computational cost and making it more practical for real-time implementations. Overall, the IS-ARPS system represents a significant advancement in the design of roll and pitch coupled interconnected suspensions, offering a more practical and versatile solution. The above features are examined through co-simulation between MATLAB/Simulink and ADAMS/Car.
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具有可调侧倾和俯仰刚度(IS-ARPS)的互联悬挂系统,可增强防侧倾和防俯冲/下沉特性
悬挂系统对于保持车辆在侧倾和俯仰方向上的稳定性至关重要。通过液压软管、流量控制阀和蓄能器将悬架支柱连接起来的液压气动互连悬架系统在进一步提高抗侧倾和抗俯仰特性方面具有巨大潜力。针对现有设计的不足,本研究引入了一种具有可调侧倾和俯仰刚度的互连悬挂系统(IS-ARPS)。它不仅取消了传统的防倾杆,还能根据驾驶和车辆负载情况调节侧倾刚度。在俯仰方向上,IS-ARPS 提供了额外的俯仰刚度,以减少制动/加速时的俯冲/下沉。IS-ARPS 的数学建模也很简单,所需的计算成本较低,更适合实时实施。总之,IS-ARPS 系统代表了滚动和俯仰耦合互联悬架设计的重大进步,提供了一种更实用、用途更广泛的解决方案。上述特点通过 MATLAB/Simulink 和 ADAMS/Car 的协同仿真进行了检验。
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来源期刊
CiteScore
4.40
自引率
17.60%
发文量
263
审稿时长
3.5 months
期刊介绍: The Journal of Automobile Engineering is an established, high quality multi-disciplinary journal which publishes the very best peer-reviewed science and engineering in the field.
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