车辆动力学方法的驾驶员警告

Y. Ghoneim
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引用次数: 4

摘要

本文讨论了一个增强主动安全的概念,通过引入基于车辆动力学的驾驶员警告系统,该系统可以在稳定控制激活之前预测潜在的失去控制状态。这种实时预警算法建立在电子稳定控制(ESC)等现有技术的基础上。驾驶员预警系统使用ESC传感器套件计算基于偏航速率、侧滑速度和车辆转向不足的几个指标。仲裁块在不同的索引之间进行仲裁,并确定驾驶车辆的状态索引。将状态指数与预定的稳定水平进行比较,这些稳定水平对应于高稳定水平和低稳定水平。如果该指数超过高稳定水平,则会发出警告信号(触觉、声学或视觉),提醒驾驶员可能失去控制并激活ESC。此警告将一直有效,直到指数低于低稳定水平,此时警告信号将终止。将车速咨询算法与预警算法相结合,提供在弯道上行驶的车辆的期望车速。仿真结果和车辆试验验证了该预警算法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Vehicle Dynamics Approach to Driver Warning
This paper discusses a concept for enhanced active safety by introducing a driver warning system based on vehicle dynamics that predicts a potential loss of control condition prior to stability control activation. This real-time warning algorithm builds on available technologies such as the Electronic Stability Control (ESC). The driver warning system computes several indices based on yaw rate, side-slip velocity, and vehicle understeer using ESC sensor suite. An arbitrator block arbitrates between the different indices and determines the status index of the driving vehicle. The status index is compared to predetermined stability levels which correspond to high and low stability levels. If the index exceeds the high stability level, a warning signal (haptic, acoustic, or visual) is issued to alert the driver of a potential loss of control and ESC activation. This alert will remain in effect until the index is less than the low stability level at which time the warning signal will be terminated. A vehicle speed advisory algorithm is integrated with the warning algorithm to provide a desired vehicle speed of a vehicle traveling on a curve. Simulation results and vehicle tests were conducted to illustrate the effectiveness of the warning algorithm.
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