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Time Headway Analysis for Four-Lane and Two-Lane Roads

机译:四车道和二车道的时空分析

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Study of vehicle time headways has been a subject to many aspects of traffic flow studies because time headway between any two successive vehicles is considered as an important parameter affecting capacity, safety, delay, driver behavior and level of service of a transportation system. Although a large number of studies exist in the field of time headway modelling, there is still a paucity of research related to time headway distribution study in two-lane bidirectional roads and four-lane divided roads with respect to varying flow rate levels. The present paper intends to study the variations in time headway distributions for four flow levels (0-600, 600-1200, 1200-1800 and 18002400 PCU/h) for different two-lane and four-lane roads in Assam, with traffic data collected from video-recorders. It is further aimed to investigate the differences in headway maintaining behavior of vehicles in morning hours and in evening hours (in presence of headlights) when the flow rates for the analyzed periods are comparable. Also vehicle-type specific headway analysis is conducted for two-lane bidirectional roads. The result of this paper not only identifies the difference in time headway distributions of mixed vehicular flow for different flow levels but also captures the differences in vehicle-type specific headways and headway maintaining behavior of vehicles when the headlights of vehicles are turned on. Results of the study can be used as an input in practical applications, especially for developing micro-simulation models and also can be used in capacity estimation, safety analysis, etc.
机译:车辆行驶时间的研究一直是交通流研究的许多方面的课题,因为连续两辆车辆之间的行驶时间被认为是影响运输系统的容量,安全性,延误,驾驶员行为和服务水平的重要参数。尽管在时间车距建模领域中存在大量研究,但针对不同流量水平,在两车道双向道路和四车道分割道路上的时间车距分布研究仍然很少。本文旨在研究阿萨姆邦不同两车道和四车道道路的四种流量水平(0-600、600-1200、1200-1800和18002400 PCU / h)的时距分布变化,并提供交通数据从录像机收集。当分析期间的流量可比较时,还旨在调查早晨和晚上(有大灯的情况下)车辆的车头保持行为的差异。还针对两车道双向道路进行了特定于车辆类型的车距分析。本文的结果不仅识别了不同流量水平下混合车流的时间车距分布的差异,而且还捕获了当打开车头灯时车辆类型特定的车速和车道保持行为的差异。研究的结果可以用作实际应用中的输入,尤其是用于开发微观仿真模型时,也可以用于容量估算,安全性分析等。

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