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H_∞ active anti-roll bar control to prevent rollover of heavy vehicles: a robustness analysis

机译:H_∞主动防轧杆控制,防止重型车辆的翻转:鲁棒性分析

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Rollover of heavy vehicle is an important road safety problem world-wide. Although rollovers are relatively rare events, they are usually deadly accidents when they occur. In order to improve roll stability, most of modern heavy vehicles are equipped with passive anti-roll bars to reduce roll motion during cornering or riding on uneven roads. This paper proposes an H_∞ approach to design active anti-roll bars using the yaw-roll model of a single unit heavy vehicle. The control signals are the torques generated by the actuators at the front and rear axles. Simulation results in both frequency and time domains are provided to compare two different cases: passive anti-roll bars and H_∞ active anti-roll bars. It is shown that the use of two H_∞ active (front and rear) anti-roll bars drastically improves the roll stability of the single unit heavy vehicle to prevent rollover.
机译:重型车辆的翻转是全球重要的道路安全问题。虽然翻转是相对罕见的事件,但它们通常在发生时致命意外。为了提高滚动稳定性,大多数现代重型车辆都配备了无源防卷杆,以减少转弯或骑在不均匀的道路上的滚动运动。本文提出了一种使用单位重型车辆的偏航辊模型设计活性抗辊杆的H_∞方法。控制信号是由前轴和后轴处的致动器产生的扭矩。提供频率和时间域的仿真结果以比较两种不同的情况:无源防辊杆和H_∞有源防卷杆。结果表明,使用两个H_∞活性(前后)抗辊杆大大提高了单位重型车辆的辊稳定性,以防止翻转。

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