可靠的电子收费通道容量

IF 1 4区 工程技术 Q4 ENGINEERING, CIVIL
C. Bari, S. Chandra, A. Dhamaniya
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引用次数: 0

摘要

电子公路收费设施的合理规划、设计和运行,收费车道的容量是需要考虑的一个重要方面。虽然道路和十字路口的通行能力通常被认为是随机的,但收费车道的通行能力仍然被认为是一个确定性的值。一项研究进行了变化的服务车头,从而可靠性相关的收费车道的容量值。在印度的三个电子收费站收集了录像交通数据。与有拖车的车辆相比,汽车的车头时距较低。使用蒙特卡罗模拟来生成由于供给侧和需求侧变化而可能出现的服务车头时程的不同变化。最终得到80%、90%和95%可靠度的运力分别为494,554和608辆/小时。开发的容量值可用于检查混合交通车道的容量比,并可用于在未来的研究中制定电子收费车道的服务水平阈值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reliable capacity of electronic toll collection lanes
For proper planning, design and operation of an electronic highway toll facility, the capacity of the toll lane is an important aspect that needs to be considered. Though the capacity of roads and intersections are generarly referred to as stochastic in nature, toll lane capacity is still considered as a deterministic value. A study was undertaken into the variation in service headway and thus reliability related to capacity values for toll lanes. Videographic traffic data was collected at three electronic toll plazas in India. The service headway of cars found to be lower compared to vehicles with trailers. A Monte Carlo simulation was used for generating different variations that may occur in the service headway due to supply-side and demand-side changes. Finally, the capacity for 80%, 90% and 95% reliability was found as 494, 554 and 608 passenger cars per hour respectively. The developed capacity values can be used to check the volume-to-capacity ratio in a mixed traffic lane and can be used to develop the level-of-service thresholds for electronic toll collection lanes in future studies.
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来源期刊
CiteScore
2.60
自引率
0.00%
发文量
42
审稿时长
5 months
期刊介绍: Transport is essential reading for those needing information on civil engineering developments across all areas of transport. This journal covers all aspects of planning, design, construction, maintenance and project management for the movement of goods and people. Specific topics covered include: transport planning and policy, construction of infrastructure projects, traffic management, airports and highway pavement maintenance and performance and the economic and environmental aspects of urban and inter-urban transportation systems.
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