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A Study of Bending Mode Algorithm of Adaptive Front-Lighting System Based on Driver Preview Behavior

机译:基于驾驶员前瞻行为的自适应前灯系统弯曲模式算法研究

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摘要

The function of adaptive front-lighting system is to improve the lighting condition of the road ahead and driving safety at night. The current system seldom considers characteristics of the drivers preview behavior and eye movement. To solve this problem, an AFS algorithm modeling a driver's preview behavior was proposed. According to the vehicle's state, the driver s manipulating input, and the vehicle's future state change which resulted from the driver's input, a dynamic predictive algorithm of the vehicle's future track was established based on an optimal preview acceleration model. Then, an experiment on the change rule of the drivers preview distance with different speeds and different road curvatures was implemented with the eye tracker and the calibration method of the driver's preview time was established. On the basis of these above theories and experiments, the preview time was introduced to help predict the vehicle's future track and an AFS algorithm modeling the driver's preview behavior was built. Finally, a simulation analysis of the AFS algorithm was carried out. By analyzing the change process of the headlamp's lighting region while bend turning which was controlled by the algorithm, its control effect was verified to be precise.
机译:自适应前灯系统的功能是改善前方道路的照明条件并改善夜间行车安全性。当前的系统很少考虑驾驶员的预览行为和眼睛移动的特征。为了解决这个问题,提出了一种对驾驶员的预览行为建模的AFS算法。根据车辆的状态,驾驶员的操纵输入以及驾驶员的输入导致的车辆的未来状态变化,基于最佳预览加速度模型,建立了车辆的未来轨迹的动态预测算法。然后,利用眼动仪对不同速度,不同曲率的驾驶员预视距离变化规律进行了实验,建立了驾驶员预视时间的标定方法。在上述理论和实验的基础上,引入了预览时间以帮助预测车辆的未来行驶轨迹,并建立了模拟驾驶员的预览行为的AFS算法。最后,对AFS算法进行了仿真分析。通过分析算法控制的前弯弯时大灯照明区域的变化过程,验证了其控制效果的准确性。

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  • 来源
    《Mathematical Problems in Engineering》 |2014年第9期|939218.1-939218.11|共11页
  • 作者

    Zhenhai Gao; Yang Li;

  • 作者单位

    State Key Laboratory of Automobile Simulation and Control, Jilin University, Changchun 130022, China,State Key Laboratory of Vehicle NVH and Safety Technology, Changan Automobile Holding, Chongqing 401120, China;

    State Key Laboratory of Automobile Simulation and Control, Jilin University, Changchun 130022, China;

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