降雨强度对城市道路异方差交通速度离散影响的建模

Jian Li, W. Lam, Xingang Li
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引用次数: 5

摘要

异方差是指具有不同于其他亚种群的离散度的随机变量的集合。变量的离散度可以通过统计离散度的度量来量化,例如标准差或标准差系数。本研究旨在建立降雨强度对城市道路异方差交通速度离散的影响模型。交通和降雨强度数据分别由香港选定的视频交通探测器和离其最近的雨量站收集。采用速度变化系数(CVS)来衡量车辆交通速度离散度。分析表明,在不同的交通密度和降雨强度下,CVS的经验值一般在0.05 ~ 0.2之间,且指数函数对干旱和降雨条件下的交通速度数据都具有较好的拟合性。提出了考虑降雨强度影响的CVS广义函数,并对其进行了标定,并用不同的经验数据集进行了验证。标定和验证结果表明,所提出的CVS广义函数与经验数据拟合良好。本研究的实证结果和CVS的广义函数可用于评估和建模与香港相似的环太平洋地区年降雨强度相对较高的城市道路服务水平。语言:在
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling the Effects of Rainfall Intensity on the Heteroscedastic Traffic Speed Dispersion on Urban Roads
The heteroscedasticity refers to a collection of random variables with a subpopulation that have different dispersions from others. The variable dispersion could be quantified by measures of statistical dispersion such as standard deviation or coefficient of standard deviation. This study aims to model the effects of rainfall intensity on the heteroscedastic traffic speed dispersion on urban roads. The traffic and rainfall intensity data were collected by a selected video traffic detector and its nearest rainfall station in Hong Kong, respectively. The coefficient of variation of speed (CVS) was employed to measure the vehicular traffic speed dispersion. The analysis shows that the empirical values of CVS typically range from 0.05 to 0.2 at different traffic densities and rainfall intensities, and the exponential function provides a good fit to traffic speed data under both dry and rain conditions. A generalized function of CVS with the effects of rainfall intensity is proposed, calibrated, and validated with different sets of empirical data. The calibration and validation results show that the proposed generalized function of CVS fits well with the empirical data. The empirical findings and the generalized function of CVS proposed in this study may benefit for assessing and modeling the level-of-service performance of urban roads in Pacific Rim cities similar to Hong Kong with relatively high annual rainfall intensity. Language: en
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