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首页> 外文期刊>International Journal of Vehicle Noise and Vibration >Analysis of semi-active suspension systems for four-axles off-road vehicle using half model
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Analysis of semi-active suspension systems for four-axles off-road vehicle using half model

机译:基于半模型的四轴越野车半主动悬架系统分析

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Handling and ride quality are affected by many factors, including high-frequency vibrations, body booming, body roll and pitch motion, vertical motion by the suspension system and frequency vibration transmitted from the road input excitations. This article focuses on the most significant vibration source that affects handling and ride quality, which is the suspension system. Passive suspension has been taken as the starting point of this work, in which we discuss the model in context. Semi-active suspension systems are introduced with the aim of exploring the performance of the system compared with passive suspension. Several control policies of semi-active systems, namely, skyhook, ground-hook and hybrid controls, are presented. Their ride comfort, suspension displacement and roadholding performances are analysed and compared with passive systems. The analysis covers both transient and steady-state responses in the time domain and transmissibility response in the frequency domain. The results show that the hybrid control policy yields better comfort than a passive suspension, without reducing the road-holding quality or increasing the suspension displacement for a typical off-road vehicle. The hybrid control policy is also shown to provide a better compromise between comfort, road-holding and suspension displacement than the skyhook and ground-hook control policies.
机译:操纵和行驶质量受许多因素影响,包括高频振动,车身繁荣,车身侧倾和俯仰运动,悬架系统的垂直运动以及道路输入激励传输的频率振动。本文重点讨论影响操纵和行驶质量的最重要的振动源,即悬架系统。被动悬架已经作为这项工作的出发点,我们在上下文中讨论了该模型。引入半主动悬架系统的目的是探索与被动悬架相比系统的性能。提出了半主动系统的几种控制策略,即天钩,地钩和混合控制。分析了它们的乘坐舒适性,悬架位移和抓地性能,并与被动系统进行了比较。该分析涵盖了时域的瞬态和稳态响应以及频域的透射率响应。结果表明,混合动力控制策略比被动悬架具有更好的舒适性,而不会降低抓地力或增加典型越野车的悬架排量。与天钩和地钩控制策略相比,混合控制策略还显示出在舒适性,抓地力和悬架位移之间提供了更好的折衷。

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