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Study on the Stability of High-Speed Turning Braking Based on the Hardware-in-the-Loop Test

机译:基于在环测试的高速转弯制动稳定性研究

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During the tire cornering braking process, busses easily cause traffic accidents such as slewed or tail flick if the tire is not locked. Therefore, in the process of cornering braking, the theoretical controlled slip rate of approximately 0.2 is not sufficient. To improve the stability of the vehicle, the Hardware-in-the-Loop Test is introduced. The fuzzy PID algorithm is used to calculate the tire slip rate of four tires using the actual yaw velocity and sideslip angle values and the expected difference among the values. The high-speed vehicle was tested on high- and low-adhesion roads. The study shows that this method outputs the new slip rate, improves the vehicle stability in the loss of braking efficiency, further perfects the study of the antilock braking system and has practical significance.
机译:在轮胎转弯制动过程中,如果轮胎未锁紧,则公共汽车很容易引起交通事故,例如回转或甩尾。因此,在转弯制动过程中,理论上控制的滑移率约为0.2是不够的。为了提高车辆的稳定性,引入了硬件在环测试。模糊PID算法用于使用实际横摆速度和侧滑角值以及这些值之间的预期差值来计算四个轮胎的轮胎滑移率。高速车辆已在高粘附性和低粘附性道路上进行了测试。研究表明,该方法输出新的滑移率,提高了车辆稳定性,降低了制动效率,进一步完善了防抱死制动系统的研究,具有实际意义。

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