Faculty of Maritime and Transportation, Ningbo University, China; Jiangsu Province Collaborative Innovation Center for Modern Urban Traffic Technologies, China.
Jiangsu Key Laboratory of Urban ITS, Southeast University, Si Pai Lou #2, Nanjing 210096, Jiangsu Province, China.
Accid Anal Prev. 2016 Oct;95(Pt B):425-437. doi: 10.1016/j.aap.2016.04.014. Epub 2016 May 18.
At unsignalized crosswalks, interactions between pedestrians and vehicles often lead to traffic safety hazards due to absence of traffic control and unclear right-of-ways. To address this safety problem, there is a need to understand the interaction behaviors of pedestrians and vehicles that are complicated by a variety of traffic and roadway attributes. The prime objective of this study is to establish a reliable simulation model to represent the vehicle yielding and pedestrian crossing behaviors at unsignalized crosswalks in a realistic way. The model is calibrated with detailed behavioral data collected and extracted from field observations. The capability of the calibrated model in predicting the pedestrian-interaction events as well as estimating the driver yielding rate and pedestrian delay are also tested and demonstrated. Meanwhile, the traffic dynamics in the vicinity of the crosswalk can be meaningfully represented with simulation results based on the model. Moreover, with the definitions of the vehicle-pedestrian conflicts, the proposed model is capable to evaluate the pedestrian safety. Thereby, the simulation model has the potential to serve as a useful tool for assessing safety performance and traffic operations at existing facilities. Furthermore, the model can enable the evaluation of policy effectiveness and the selection of engineering treatments at unsignalized crosswalks to improve safety and efficiency of pedestrian crossing.
在无信号交叉口,由于缺乏交通管制和不明确的通行权,行人和车辆之间的相互作用常常导致交通安全隐患。为了解决这个安全问题,需要了解行人和车辆的相互作用行为,这些行为受到各种交通和道路属性的影响而变得复杂。本研究的主要目的是建立一个可靠的仿真模型,以真实的方式表示无信号交叉口的车辆让行和行人过街行为。该模型通过从现场观测中收集和提取的详细行为数据进行校准。还测试和演示了校准模型预测行人间相互作用事件以及估计驾驶员让行率和行人延迟的能力。同时,基于该模型的仿真结果可以有意义地表示交叉口附近的交通动态。此外,通过定义车辆-行人冲突,提出的模型能够评估行人安全。因此,该仿真模型有可能成为评估现有设施安全性能和交通运行的有用工具。此外,该模型可以评估无信号交叉口的政策有效性和工程处理措施的选择,以提高行人过街的安全性和效率。