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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Fault-tolerant driving control of a steer-by-wire system for six-wheel-driving-six-wheel-steering vehicles
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Fault-tolerant driving control of a steer-by-wire system for six-wheel-driving-six-wheel-steering vehicles

机译:六轮驱动六轮转向车辆的线控转向系统的容错驱动控制

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摘要

This paper describes a fault-tolerant driving control strategy for steer-by-wire system failures in six-wheel-driving-six-wheel-steering vehicles. The fault-tolerant driving control algorithm was designed to obtain vehicle manoeuvrability as close as possible to that of non-faulty vehicles by redistributing the tractive forces of the non-faulty wheels. Since a faulty steer-by-wire system induces a high lateral tyre force, which is the resistance to the yaw motion of the vehicle, a high-wheel slip control strategy is used to minimize the resistive lateral tyre force of the faulty steer-by-wire system. The fault-tolerant driving performance of a faulty six-wheel-driving-six-wheel-steering vehicle was investigated via computer simulations. To investigate the effectiveness of the proposed fault-tolerant driving control algorithm, the fault recovery rate was defined and calculated in terms of the vehicle manoeuvrability. Simulation studies show that the proposed fault-tolerant driving control algorithm can significantly improve the vehicle manoeuvrability, compared with the optimal traction redistribution method.
机译:本文描述了六轮驱动六轮转向车辆的线控转向系统故障的容错驾驶控制策略。容错驾驶控制算法旨在通过重新分配非故障车轮的牵引力来获得尽可能接近非故障车辆的机动性。由于有故障的线控转向系统会引起较高的侧向轮胎力,这是对车辆偏航运动的阻力,因此,采用了高车轮打滑控制策略可最大程度地减少有故障的转向器的横向轮胎力线系统。通过计算机仿真研究了有故障的六轮驱动六轮转向车辆的容错驾驶性能。为了研究所提出的容错驾驶控制算法的有效性,根据车辆的操纵性定义并计算了故障恢复率。仿真研究表明,与最优牵引力重新分配方法相比,所提出的容错驾驶控制算法可以显着提高车辆的操纵性能。

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