考虑交通构成的基于车道的饱和流率分析

IF 1.3 4区 工程技术 Q3 TRANSPORTATION SCIENCE & TECHNOLOGY
A. Mohammad, Hazem M. Al Nawaiseh, Wael K. M. Alhajyaseen, Charitha Dias, Babak Mehran
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引用次数: 0

摘要

饱和流率(SFR)是估计信号交叉口通行能力的重要指标。影响SFR的因素很多,包括交通构成、十字路口的配置和几何形状,以及驾驶员的行为,这些都具有典型的社会和文化规范特征。以往的研究大多估计SFR和调整因子是独立应用的,没有考虑影响因子之间的交互影响。本研究旨在实证检验车道数、重型车辆比例及其交互作用对穿越运动SFR的影响。在考虑上游通道数的情况下,建立了放大高压对SFR值影响的新模型。本文的研究结果有助于完善SFRs调整因子的乘法模型结构。由负责的运输当局采纳这项研究的结果,可优化道路基础设施的供应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lane-based analysis of the saturation flow rate considering traffic composition
ABSTRACT Saturation flow rate (SFR) is an essential metric for estimating the capacities of signalized intersections. Many factors, including traffic composition, configuration and geometry of the intersection, and driver behavior, which is typically characterized by social and cultural norms, influence SFR. Most of the previous studies estimated the SFR and adjustment factor to be applied independently without considering the interaction impact between influencing factors. This study aims to empirically examine the influence of the number of lanes, the heavy vehicle proportions, and their interaction effect on the SFR of through movements. A new model was developed to magnify the HV Impact on SFR value considering the number of lanes at the upstream approach. The outcome of this study helps to improve the multiplicative model’s structure for SFRs adjustment factors. Adopting the outcome of this study by the responsible transport authority would optimize the road infrastructure provision.
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来源期刊
Transportation Planning and Technology
Transportation Planning and Technology 工程技术-运输科技
CiteScore
3.40
自引率
6.20%
发文量
24
审稿时长
12 months
期刊介绍: Transportation Planning and Technology places considerable emphasis on the interface between transportation planning and technology, economics, land use planning and policy. The Editor welcomes submissions covering, but not limited to, topics such as: • transport demand • land use forecasting • economic evaluation and its relationship to policy in both developed and developing countries • conventional and possibly unconventional future systems technology • urban and interurban transport terminals and interchanges • environmental aspects associated with transport (particularly those relating to climate change resilience and adaptation). The journal also welcomes technical papers of a more narrow focus as well as in-depth state-of-the-art papers. State-of-the-art papers should address transport topics that have a strong empirical base and contain explanatory research results that fit well with the core aims and scope of the journal.
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