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首页> 外文期刊>Journal of Safety Research >Investigation of crashes at pedestrian hybrid beacons: Results of a large-scale study in Arizona
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Investigation of crashes at pedestrian hybrid beacons: Results of a large-scale study in Arizona

机译:人行语杂交信标的调查:亚利桑那州大规模研究的结果

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Introduction: The pedestrian hybrid beacon (PHB) is a traffic control device used at pedestrian crossings. A recent Arizona Department of Transportation research effort investigated changes in crashes for different severity levels and crash types (e.g., rear-end crashes) due to the PHB presence, as well as for crashes involving pedestrians and bicycles. Method: Two types of methodologies were used to evaluate the safety of PHBs: (a) an Empirical Bayes (EB) before-after study, and (b) a long-term cross-sectional observational study. For the EB before-after evaluation, the research team considered three reference groups: unsignalized intersections, signalized intersections, and both unsignalized and signalized intersections combined. Results: For the signalized and combined unsignalized and signalized intersection groups, all crash types considered showed statistically significant reductions in crashes (e.g., total crashes, fatal and injury crashes, rear-end crashes, fatal and injury rear-end crashes, angle crashes, fatal and injury angle crashes, pedestrian-related crashes, and fatal and injury pedestrian-related crashes). A cross-sectional study was conducted with a larger number of PHBs (186) to identify relationships between roadway characteristics and crashes at PHBs, especially with respect to the distance to an adjacent traffic control signal. The distance to an adjacent traffic signal was found to be significant only at the alpha = 0.1 level, and only for rear-end and fatal and injury rear-end crashes. Conclusions: This analysis represents the largest known study to date on the safety impacts of PHBs, along with a focus on how crossing and geometric characteristics affect crash patterns. The study showed the safety benefits of PHBs for both pedestrians and vehicles. Practical Applications: The findings from this study clearly support the installation of PHBs at midblock or intersection crossings, as well as at crossings on higher-speed roads. (C) 2021 National Safety Council and Elsevier Ltd. All rights reserved.
机译:简介:行人混合标灯(PHB)是行人交叉路口的交通管制设备。最近亚利桑那州的运输部门努力调查了由于PHB存在而导致不同严重程度和碰撞类型(例如,后端崩溃)的变化,以及涉及行人和自行车的撞车。方法:采用两种类型的方法来评估PHBS的安全性:(a)在研究之前进行的经验贝叶斯(EB),和(b)长期横截面观察研究。对于eb之前,研究团队考虑了三个参考组:无罪化的交叉点,信号交叉口,以及联合化和信号交叉口的联合。结果:对于信号化和组合的无罪化和信号交叉组,所有被认为的崩溃类型都显示出崩溃的统计显着减少(例如,总崩溃,致命和伤害崩溃,后端碰撞,致命和伤害后端碰撞,角度碰撞,角度碰撞,致命和伤害角度崩溃,行人相关的崩溃和致命和伤害行人相关的崩溃)。用更多数量的PHBS(186)进行横截面研究,以识别道路特性之间的关系,并在PHBS处崩溃,特别是关于与相邻交通管制信号的距离。发现与相邻流量信号的距离仅在alpha = 0.1水平上显着,并且仅用于后端和致命和伤害后端碰撞。结论:该分析代表了迄今为止对PHBS的安全影响的最大的研究,同时侧重于交叉和几何特征如何影响碰撞模式。该研究表明,行人和车辆的PHBS的安全益处。实际应用:本研究的调查结果清楚地支持在中间块或交叉口的PHBS安装,以及在更高速道路上的交叉口。 (c)2021国家安全委员会和elestvier有限公司保留所有权利。

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