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Musculoskeletal analysis of driving fatigue: The influence of seat adjustments

机译:驱动疲劳的肌肉骨骼分析:座椅调整的影响

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Main causes for discomfort experienced by vehicle drivers during driving were investigated using a rigid-body model originally developed in the AnyBody Modeling System [1]. The interactions between the human body and the car-seat in various combinations of seat-pan/backrest inclinations and the effect of pedal spring stiffness were analyzed using an inverse dynamics approach. To deal with the muscle redundancy problem, (i.e. the problem with the human-body containing more muscles than necessary to drive its degrees of freedom) a "minimum-fatigue" criterion [2] was utilized. The results show that various seat adjustments (e.g., seat-pan and backrest inclinations) and the pedal spring stiffness have complex influences on the muscle activation and spinal joint forces of the human body. From the results, an optimal adjustment for the car-seat is proposed, i.e. the backrest inclination is 10° and the seat-pan inclination is between 0° to 5 °. This study can in general capture the overall interactions between human body and environment (i.e. the maximum muscle activity and spine forces), which is thought to be the factors of driving fatigue.
机译:使用最初在任何人的建模系统中开发的刚性机身模型研究了驾驶期间车辆驾驶员经历的主要原因[1]。使用逆动力学方法分析了人体和座椅靠背倾斜的各种组合和踏板弹簧刚度的效果之间的相互作用。为了处理肌肉冗余问题,(即含有更多肌肉的人体的问题,比驾驶其自由度的必要性)“最小疲劳”标准[2]。结果表明,各种座椅调节(例如,座椅平底锅和靠背倾斜)和踏板弹簧刚度对人体的肌肉活化和脊髓关节力具有复杂的影响。从结果中,提出了对汽车座椅的最佳调节,即靠背倾斜度为10°,座椅平移倾斜度在0°至5°之间。这项研究通常可以捕获人体和环境之间的整体相互作用(即最大肌肉活动和脊柱部队),被认为是驾驶疲劳的因素。

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