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Traffic Simulation Analysis on Running Speed in a Connected Vehicles Environment

机译:车联网环境下行驶速度的交通仿真分析

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摘要

Connected vehicles (CVs) exchange a variety of information instantly with surrounding vehicles and traffic facilities, which could smooth traffic flow significantly. The objective of this paper is to analyze the effect of CVs on running speed. This study compared the delay time, travel time, and running speed in the normal and the connected states, respectively, through VISSIM (a traffic simulation software developed by PTV company in German). The optimization speed model was established to simulate the decision-makings of CVs in MATLAB, considering the parameters of vehicle distance, average speed, and acceleration, etc. After the simulation, the vehicle information including speed, travel time, and delay time under the normal and the connected states were compared and evaluated, and the influence of different CV rates on the results was analyzed. In a two-lane arterial road, running speed in the connected state increase by 4 km/h, and the total travel time and delay time decrease by 5.34% and 16.76%, respectively, compared to those in the normal state. The optimal CV market penetration rate related to running speed and delay time is 60%. This simulation-based study applies user-defined lane change and lateral behavior rules, and takes different CV rates into consideration, which is more reliable and practical to estimate the impact of CV on road traffic characteristics.
机译:联网车辆(CV)可以与周围的车辆和交通设施即时交换各种信息,从而可以显着缓解交通流量。本文的目的是分析CV对运行速度的影响。这项研究通过VISSIM(由德国PTV公司开发的交通模拟软件)分别比较了正常状态和连接状态下的延迟时间,行驶时间和行驶速度。建立了优化速度模型,在考虑MATLAB车辆距离,平均速度,加速度等参数的前提下,对CV的决策进行了仿真。仿真后,在此条件下,车辆信息包括速度,行驶时间和延迟时间。比较和评估正常状态和连接状态,并分析不同CV速率对结果的影响。在两条车道的道路上,连接状态下的行驶速度比正常状态下增加了4 km / h,总行驶时间和延迟时间分别减少了5.34%和16.76%。与运行速度和延迟时间有关的最佳CV市场渗透率是60%。这项基于模拟的研究应用了用户定义的车道变更和横向行为规则,并考虑了不同的CV比率,这对于评估CV对道路交通特性的影响更为可靠和实用。

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