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Active sliding mode control of vehicle occupant's motion in front- and rear-end collisions

机译:主动和滑动模式控制车辆在前后碰撞中的运动

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摘要

This paper presents the sliding mode control of vehicle occupant-seat frame on front- and rear-end collisions. A three degrees of freedom occupant model is derived and used to develop a sliding mode control algorithm which works along with other safety restraint systems in order to reduce the injury level of the occupants' head and chest as well as safety belt force and neck torque. Simulation results for various crash conditions are compared to conventional restraint systems with and without safety belt force limiter for the nonlinear three degrees of freedom occupant model. The study shows that the chest and neck injury criteria in front collisions are significantly reduced by controlling the occupant's seat frame via sliding surface control.
机译:本文提出了在前后碰撞时车辆乘客座椅框架的滑模控制。推导了一个三自由度乘员模型,该模型用于开发一种滑模控制算法,该算法可与其他安全约束系统一起使用,以减少乘员头部和胸部的伤害水平以及安全带力和颈部扭矩。针对非线性三自由度乘员模型,将各种碰撞条件下的仿真结果与具有和不具有安全带力限制器的常规约束系统进行了比较。研究表明,通过滑动表面控制来控制乘员的座椅框架,可以显着降低前撞中胸部和颈部受伤的标准。

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