ASYMMETRIC DRIVING BEHAVIOUR ANALYSIS USING FIELD TRAJECTORIES

Xiuling Huang, Jie Sun, Jian Sun
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Abstract

Asymmetric driving behaviour in acceleration and deceleration processes under car-following (CF) state can affect traffic flow significantly. Thus, to improve the performance of CF models, the formation mechanism of the asymmetric driving characteristics (gap difference, reaction time difference, response intensity difference, discrete driving difference) and the internal relations between them should be investigated. Thus the quantification methods are proposed to study the asymmetry for each driving characteristic. Then the mean values of the gap, reaction time, discrete intensity, and response intensity at each velocity fragment in acceleration and deceleration process are measured respectively using the NGSIM data with the proposed quantification methods. By comparing these mean values in acceleration and in deceleration processes, the asymmetry of the gap, reaction time, discrete intensity and response intensity are validated. Moreover, the correlation analysis between the four asymmetric driving characteristics are implemented while the results indicate they influence each other, and the formation mechanisms of the four asymmetric driving behaviours are obtained.
利用场轨迹分析非对称驱动行为
车辆跟随状态下加减速过程中的非对称驾驶行为对交通流有显著影响。因此,为了提高CF模型的性能,需要研究非对称驱动特性(间隙差、反应时差、响应强度差、离散驱动差)的形成机理及其内在关系。因此,提出了量化方法来研究各驱动特性的不对称性。然后利用NGSIM数据分别测量加减速过程中各速度段间隙、反应时间、离散强度和响应强度的平均值,并采用所提出的量化方法。通过对加速和减速过程的平均值进行比较,验证了间隙、反应时间、离散强度和响应强度的不对称性。并对四种不对称驾驶特征进行了相关性分析,结果表明它们之间存在相互影响,得出了四种不对称驾驶行为的形成机制。
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