Estimation of system delay based toll equivalency factors at toll plazas using simulation

Chintaman S. Bari , Satish Chandra , Ashish Dhamaniya
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引用次数: 1

Abstract

The service time and time headway of the vehicles are used to define the equivalency factor of different vehicle classes at the toll plaza. Both the service time and time headway are point measures and do not account for the system delay (time difference when a vehicle enters the queue and leaves the tollbooth) caused to the vehicle. The present study aims to quantify the system delay incurred to the vehicles at electronic toll collection (ETC) lanes under mixed traffic conditions using a microsimulation approach. Field data collected from one toll plaza located on a National Highway are used for simulation model generation. A new terminology called system delay-based toll equivalency factor (DTEF) is introduced to convert the different vehicle classes into equivalent passenger cars. The DTEF variation for different approach volumes and heavy commercial vehicle (HCV) compositions were checked at different ETC penetration levels. A total of 288 scenarios have been worked out, and simulation runs have been made for all such scenarios to obtain the DTEF values. The average DTEF value of HCV was obtained as 2.20. Further, it is found that with an increase in approach volume and HCV share in the traffic stream, the DTEF value increases. The outcome of the present study will be useful to field practitioners and engineers to determine the capacity in equivalent DTEF/hr and level of service of a toll plaza in terms of system delay.

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基于收费广场收费等效系数的系统延迟仿真估计
利用车辆的服务时间和车头时距来确定收费广场上不同类别车辆的等效系数。服务时间和车头时距都是点计量,并不考虑系统延误(车辆进入排队和离开收费站时的时间差)对车辆造成的影响。本研究旨在利用微观模拟方法,量化混合交通条件下电子收费(ETC)车道上车辆的系统延迟。仿真模型的生成采用国道收费广场现场采集的数据。引入基于系统延迟的收费等效系数(DTEF),将不同的车辆类别转换为等效的乘用车。在不同的ETC渗透水平下,检查了不同进近体积和重型商用车(HCV)成分的DTEF变化。共编制了288个场景,并对所有场景进行了模拟运行,以获得DTEF值。HCV的平均DTEF值为2.20。进一步发现,随着进近量和HCV在交通流中所占份额的增加,DTEF值也随之增加。本研究的结果将有助于现场从业人员和工程师确定收费广场在系统延迟方面的等效DTEF/hr容量和服务水平。
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来源期刊
International Journal of Transportation Science and Technology
International Journal of Transportation Science and Technology Engineering-Civil and Structural Engineering
CiteScore
7.20
自引率
0.00%
发文量
105
审稿时长
88 days
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