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Fault-tolerant automobile steering based on diversity of steer-by-wire, braking and acceleration

机译:基于线控转向,制动和加速的多样性的容错汽车转向

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摘要

Steer-by-wire (SBW) systems, which have no mechanical linkage between the steering wheel and front wheels, are expected to improve vehicle safety through better steering capability. SBW system failures, however, can cause hazardous driving situations. This paper introduces fault-tolerant architecture based on diversified steering mechanisms consisting of SBW backed up with steering by braking and acceleration during SBW failures. These backup steering functions are chosen according to driver's intention of deceleration and acceleration. A loss of SBW function during front-obstacle avoidance on a straight highway is investigated by driving simulator experiments. The results show that the driver can maneuver the vehicle by the steering wheel during the SBW failures. Both cost and volume increase by excessive redundancy within SBW is avoided by the diversified design, thus facilitating SBW application on new-generation vehicles.
机译:线控转向(SBW)系统在方向盘和前轮之间没有机械连接,因此有望通过更好的转向能力来提高车辆安全性。但是,SBW系统故障可能会导致危险的驾驶情况。本文介绍了基于多样化转向机制的容错架构,该机制由SBW组成,并在SBW故障期间通过制动和加速来支持SBW。这些后备转向功能是根据驾驶员的减速和加速意图选择的。通过驾驶模拟器实验研究了在直行高速公路上避开前方障碍物期间SBW功能的丧失。结果表明,在SBW故障期间,驾驶员可以通过方向盘操纵车辆。多样化的设计避免了SBW内部过度冗余带来的成本和体积增加,从而促进了SBW在新一代车辆上的应用。

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