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Vehicle yaw stability control using active rear steering: Development and experimental validation

机译:使用主动后转向的车辆横摆稳定性控制:开发和实验验证

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摘要

In this paper, a novel pulse active steering system for improving vehicle yaw stability is developed. In the proposed method, pulses are sent to the steerable rear wheels whenever the error between the expected and actual yaw rate is outside a predetermined range. The proposed method and its performance are verified experimentally by full vehicle testing. For this purpose, a simplified vehicle model and a rear suspension model are developed. Vehicle stability is investigated and the steering pulse parameters on the vehicle's stability are studied. A control system is designed and numerical simulations are performed. Moreover, the active rear steering system is implemented on a Lexus for performing road experiments. Results from simulations and experiments indicate that considerable improvement in the yaw stability performance can be achieved by the proposed system. The proposed method is more cost effective and simpler for vehicle stability control.
机译:在本文中,开发了一种用于改善车辆偏航稳定性的新型脉冲主动转向系统。在所提出的方法中,每当预期和实际横摆率之间的误差超出预定范围时,就将脉冲发送至可转向后轮。通过整车测试实验验证了所提出的方法及其性能。为此,开发了简化的车辆模型和后悬架模型。研究了车辆的稳定性,并研究了转向脉冲参数对车辆的稳定性的影响。设计了控制系统并进行了数值模拟。此外,主动式后转向系统在雷克萨斯(Lexus)上实现,用于进行道路实验。仿真和实验的结果表明,所提出的系统可以实现横摆稳定性能的显着改善。所提出的方法对于车辆稳定性控制而言更具成本效益并且更简单。

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