Correlation Analysis of Drivers’ Natural Driving Behavior Based on Kernel Density Estimation

Tianjun Sun, Hongyu Hu, Ronggui Cai, Tong Yu, Feng Yu
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Abstract

To investigate the interplay between driver handling behaviors, this article collects data on vehicle kinematic parameters characterizing driver handling characteristics under natural driving, estimates the probability density curves of the parameters using the kernel density method, and fits the curve equations. On this basis, a percentile correlation analysis was performed between the parameters to obtain the influence relationship between the handling behaviors. The results show that longitudinal maneuvers are frequent and intense in the 0–10 km/h speed range, lateral maneuvers are more intense in the 10–30 km/h speed range, and the interaction between longitudinal and lateral maneuvers is more intense in the acceleration phase. This study enriches the natural driving dataset and illustrates the correlation of driving behavior under natural driving, providing a theoretical and data basis for the development of driver-oriented intelligent driving technologies.
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基于核密度估计的驾驶员自然驾驶行为相关性分析
为了研究驾驶员操纵行为之间的相互作用,本文收集了自然驾驶下表征驾驶员操纵特征的车辆运动学参数数据,利用核密度法估计了参数的概率密度曲线,并对曲线方程进行了拟合。在此基础上,对各参数进行百分位数相关分析,得到处理行为之间的影响关系。结果表明:在0 ~ 10 km/h速度范围内,纵向机动频率高、强度大;在10 ~ 30 km/h速度范围内,横向机动强度更大;在加速阶段,纵向机动与横向机动的相互作用更强烈;本研究丰富了自然驾驶数据集,阐明了自然驾驶下驾驶行为的相关性,为面向驾驶员的智能驾驶技术的发展提供了理论和数据基础。
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