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DEVELOPMENT OF SEATED HUMAN MODEL WITH UNCERTAIN PARAMETERS AND ESTIMATION OF THE RIDE COMFORT

机译:参数不确定的人坐模型的开发与乘坐舒适度的估计。

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摘要

This study deals with the biodynamic responses of the 5-degree-of-freedom mathematical human model to whole-body vibrations in a vehicle. The nonlinear equations of motion of the human model were derived, and the spring constants and damping coefficients were extracted from the experimental data in the literature using optimization process. The natural frequencies and mode shapes were also calculated using linearized human model. In order to examine the effects of the variations of the human parameters, the parametric studies with respect to the stiffness values were performed. The mode veering phenomenon was observed between fourth and fifth mode of the linearized human model. In addition, the frequency responses of the nonlinear 5-degree-of-freedom model were also obtained, and the frequency shift and jump phenomena were observed. Furthermore, the estimation of the ride comfort was performed using CarSim and Matlab/Simulink with several road profiles according to ISO classification. Besides, we also calculated the ride comfort index using BS 6841 standard. In order to calculate the statistical responses of human model, the Monte-Carlo simulation applied to the nonlinear human model having uncertain stiffness assuming Gaussian distribution. These stochastic approaches enable the proposed human model to estimate probability distributions of the ride comfort index.
机译:这项研究涉及5自由度数学人体模型对车辆整体振动的生物动力响应。推导了人体模型的非线性运动方程,并利用优化过程从文献中的实验数据中提取了弹簧常数和阻尼系数。固有频率和模态形状也使用线性人体模型进行了计算。为了检查人体参数变化的影响,进行了有关刚度值的参数研究。在线性人体模型的第四和第五模式之间观察到模式转向现象。此外,还获得了非线性五自由度模型的频率响应,并观察到了频移和跳跃现象。此外,根据ISO分类,使用CarSim和Matlab / Simulink对行驶舒适度进行了估算,并具有多种道路轮廓。此外,我们还使用BS 6841标准计算了乘坐舒适度指数。为了计算人体模型的统计响应,将蒙特卡洛模拟应用于假设高斯分布的具有不确定刚度的非线性人体模型。这些随机方法使所提出的人体模型能够估计乘坐舒适性指数的概率分布。

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