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首页> 外文期刊>Journal of low frequency noise, vibration and active control >Experimental attenuation and evaluation of whole body vibration for an off-road vehicle with magnetorheological dampers
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Experimental attenuation and evaluation of whole body vibration for an off-road vehicle with magnetorheological dampers

机译:磁流变阻尼器越野车辆全身振动的实验衰减与评价

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摘要

The paper presents an analysis of vehicle vibration, ride comfort and handling which have a decisive influence on health and safety of a driver. Experiments were carried out for a commercially available experimental all-terrain vehicle in the field in hard conditions with retaining the sufficient repeatability. The vehicle is equipped with a complex vibration control system, taking advantage of four automotive magnetorheological dampers. Numerous sensors, which measure acceleration in four points of the vehicle body, near the driver's seat, feet and hands, body orientation in space and speed of vehicle wheels, are available in the vehicle. They were used for evaluation of magnetorheological dampers' control signals and analysis of vibration affecting the driver. Constant values of magnetorheological damper control current were used for emulation of different settings of passive suspension. The analysis performed in frequency domain showed how vibration propagates in a medium-sized all-terrain vehicle and indicated that driver's hands are mostly affected by the road-induced vibration. It was also confirmed that the greatest improvement of ride comfort can be obtained for the soft suspension, i.e. uncontrolled magnetorheological dampers. Furthermore, the Skyhook algorithm was implemented, including the proportional control of the magnetorheological damper force and the inverse Tanh model of the magnetorheological damper. It was validated for the wideband road-induced excitation contrary to the experiments commonly presented in the literature, which are performed only for harmonic excitation. It was shown that the properly tuned Skyhook algorithm enables improving vehicle handling compared to the passive suspension and simultaneously it can maintain the similar or even better results of ride comfort.
机译:本文介绍了车辆振动,乘坐了舒适性和处理的分析,这对驾驶员的健康和安全有决定性的影响。在硬质条件下在现场进行商业实验全地形车进行实验,其保持足够的可重复性。该车辆配备了复杂的振动控制系统,利用了四种汽车磁流变测量器。在车辆中,可以在车辆座椅,脚和手附近测量车身的四个点的众多传感器,在车辆座椅,脚和手附近,在车辆的空间和车轮的速度下,可以使用。它们用于评估磁流变阻尼器的控制信号和影响驾驶员的振动分析。磁流变阻尼器控制电流的恒定值用于仿真不同设置的被动悬架。在频域中进行的分析显示了振动如何在中型全地形车辆中传播,并表明驾驶员的手主要受道路诱导的振动的影响。还证实,对于软悬浮液,即不受控制的磁流变阻尼器,可以获得最大提高乘坐舒适性。此外,实施了Skyhook算法,包括对磁流变阻尼力的比例控制和磁流变阻尼器的逆Tanh模型。对于宽带道路诱导的激励验证,与文献中通常呈现的实验相反,这仅用于谐波激发。结果表明,与无源悬架相比,妥善调整的Skyhook算法能够改善车辆处理,同时可以维持乘坐舒适的类似甚至更好的结果。

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