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Analysis and Optimization of Seat and Suspension Parameters for Occupant Ride Comfort in a Passenger Vehicle

机译:乘用车乘车乘坐舒适座椅和悬架参数的分析与优化

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This study presents a methodology for comparative analysis of seat and suspension parameters on a system level to achieve minimum occupant head displacement and acceleration, thereby improving occupant ride comfort. A lumped-parameter full-vehicle ride model with seat structures, seat cushions and five occupants has been used. Two different vehicle masses are considered. A low amplitude pulse signal is provided as the road disturbance input. The peak vertical displacement and acceleration of the occupant’s head due to the road disturbance are determined and used as measures of ride comfort. Using a design of experiments approach, the most critical seat cushion, seat structure and suspension parameters and their interactions affecting the occupant head displacement and acceleration are determined. An optimum combination of parameters to achieve minimum peak vertical displacement and acceleration of the occupant’s head is identified using a response surface methodology.
机译:本研究提出了一种对系统水平上座椅和悬架参数的比较分析的方法,以实现最小乘员头位移和加速度,从而提高乘员乘坐舒适度。已经使用了一个带座椅结构,座垫和五个乘员的集合参数全车辆乘坐型号。考虑了两个不同的车辆。提供低幅度脉冲信号作为道路干扰输入。根据道路干扰,确定乘员头的峰值垂直位移和加速度,并用作乘坐舒适度的衡量标准。确定了实验方法的设计,确定了最关键的座垫,座椅结构和悬架参数及其影响影响乘员头位移和加速度的相互作用。使用响应表面方法识别用于实现最小峰值垂直位移和乘员头部加速度的参数的最佳组合。

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