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An investigation into vehicle rollover prevention by coordinated control of active anti-roll bar and electronic stability program

机译:通过主动防倾杆和电子稳定程序的协调控制来防止车辆侧翻

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摘要

This paper presents a method for designing a controller that uses an active anti-roll bar (AARB) and an electronic stability program (ESP) for rollover prevention. ESP with longitudinal speed control (LSC) can carry out active braking to reduce vehicle speed and lateral acceleration to prevent a rollover. To enhance the rollover prevention capability of the ESP, an AARB is adopted. The controller for the AARB was designed based on linear quadratic (LQ) static output feedback (SOF) control methodology, which attenuates the effect of lateral acceleration on the roll angle and roll rate by control of the suspension stroke and the tire deflection of the vehicle. Although this AARB significantly increases ride comfort and rollover prevention, it has a drawback — the vehicle loses its maneuverability. Therefore, the ESP with LSC is used to overcome this drawback. Simulations showed that the proposed method was effective in preventing a rollover.
机译:本文提出了一种设计控制器的方法,该控制器使用主动防倾杆(AARB)和电子稳定程序(ESP)来防止侧翻。具有纵向速度控制(ESC)的ESP可以进行主动制动,以降低车速和横向加速度,以防止侧翻。为了增强ESP的防侧翻能力,采用了AARB。 AARB的控制器是基于线性二次(LQ)静态输出反馈(SOF)控制方法设计的,该方法通过控制悬架冲程和车辆的轮胎偏斜来减弱侧向加速度对侧倾角和侧倾率的影响。尽管该AARB大大提高了乘坐舒适性和防侧翻能力,但它有一个缺点-车辆失去了机动性。因此,带有LSC的ESP用于克服此缺点。仿真表明,所提出的方法在防止侧翻方面是有效的。

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