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Investigating the safety impact of roadway network features of suburban arterials in Shanghai

机译:调查上海郊区动脉道路网络特征的安全影响

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With rapid changes in land use development along suburban arterials in Shanghai, there is a corresponding increase in traffic demand on these arterials. To accommodate the local traffic needs of high accessibility and efficiency, an increased number of signalized intersections and accesses have been installed. However, the absence of a defined hierarchical road network, together with irregular signal spacing and access density, tends to deteriorate arterial safety. Previous studies on arterial safety were generally based on a single type of road entity, either intersection or roadway segment, and they analyzed the safety contributing factors (e.g. signal density and access density) on only that type of road entity, while these suburban arterial characteristics could significantly influence the safety performance of both intersections and roadway segments. Macro-level safety modeling was usually applied to investigate the relationships between zonal crash frequencies and demographics, road network features, and traffic characteristics, but the previous researchers did not consider the specific arterial characteristics of signal density and access density. In this study, a new modeling strategy was proposed to analyze the safety impacts of zonal roadway network features (i.e., road network patterns and road network density) along with the suburban arterial characteristics of signal density and access density. Bayesian Conditional Autoregressive Poisson Log-normal models were developed for suburban arterials in 173 traffic analysis zones in the suburban area of Shanghai. Results identified that the grid pattern road network with collector roads parallel to arterials was associated with fewer crashes than networks without parallel collectors. On the other hand, lower road network density, higher signal density and higher access density tended to increase the crash occurrence on suburban arterials.
机译:随着上海郊区干线土地利用发展的迅速变化,这些干线的交通需求也相应增加。为了适应高通达性和高效率的本地交通需求,已经安装了越来越多的信号交叉口和通道。但是,缺少定义的分层道路网络以及不规则的信号间隔和访问密度,往往会降低动脉安全性。以前的动脉安全性研究通常是基于单一类型的道路实体(路口或道路段),并且他们仅分析了该类型道路实体的安全影响因素(例如信号密度和通道密度),而这些郊区动脉特征可能会大大影响交叉口和道路段的安全性能。通常使用宏观安全模型来研究区域碰撞频率与人口统计,道路网络特征和交通特征之间的关系,但先前的研究人员并未考虑信号密度和通道密度的特定动脉特征。在这项研究中,提出了一种新的建模策略来分析区域性道路网络特征(即道路网络模式和道路网络密度)的安全影响以及信号密度和访问密度的郊区动脉特征。针对上海郊区173个交通分析区域中的郊区动脉,开发了贝叶斯条件自回归泊松对数正态模型。结果表明,与没有平行收集器的网络相比,具有平行于动脉的收集器道路的网格状道路网络与更少的碰撞相关。另一方面,较低的道路网络密度,较高的信号密度和较高的访问密度往往会增加郊区动脉发生车祸的可能性。

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