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Random vibration of vehicle with hysteretic nonlinear suspension under road roughness excitation

机译:道路粗糙激励下滞回非线性悬架的车辆随机振动

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摘要

The analysis of random vibration of a vehicle with hysteretic nonlinear suspension under road roughness excitation is a fundamental part of evaluation of a vehicle’s dynamic features and design of its active suspension system. The effective analysis method of random vibration of a vehicle with hysteretic suspension springs is presented based on the pseudoexcitation method and the equivalent linearisation technique. A stable and efficient iteration scheme is constructed to obtain the equivalent linearised system of the original nonlinear vehicle system. The power spectral density of the vehicle responses (vertical body acceleration, suspension working space and dynamic tyre load) at different speeds and with different nonlinear levels of hysteretic suspension springs are analysed, respectively, by the proposed method. It is concluded that hysteretic nonlinear suspensions influence the vehicle dynamic characteristic significantly; the frequency-weighted root mean square values at the front and rear suspensions and the vehicle’s centre of gravity are reduced greatly with increasing the nonlinear levels of hysteretic suspension springs, resulting in better ride comfort of the vehicle.
机译:道路粗糙度激励下具有滞回非线性悬架的车辆随机振动的分析是车辆动态特征和其主动悬架系统的设计的基本部分。基于伪渗透方法和等效的线性化技术,提出了一种带滞圈悬架弹簧的车辆的随机振动的有效分析方法。构造稳定高效的迭代方案以获得原始非线性车辆系统的等效线性化系统。通过所提出的方法分别分别以不同速度和不同的非线性迟滞悬架弹簧分别具有不同速度和不同非线性水平的车辆响应(垂直体加速度,悬架工作空间和动态轮胎负载)的功率谱密度。结论是,滞后非线性悬浮液显着影响车辆动态特征;随着滞后悬架弹簧的非线性水平增加,前部和后悬架的频率加权根平均方形值和车辆重心的频率加重和车辆重心,从而更好地乘坐车辆的舒适性。

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