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Safety effects of street lighting on roadway segments: Development of a crash modification function

机译:路线街道街道照明的安全效果:碰撞修改功能的发展

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Objective: Nighttime crashes are overrepresented on the U.S. highway system. Roadway lighting, which provides additional visibility by supplementing vehicle headlights, has been identified as an effective countermeasure to improve nighttime safety. However, the existing literature does not provide a thorough understanding of the effects of street lighting photometric characteristics on nighttime crash occurrence on roadway segments. This study aimed to investigate the relationship between lighting photometric measures and nighttime crash risk on roadway segments and develop a crash modification function/factor (CMF).Methods: The research team collected horizontal illuminance data on 440 roadway segments between 2 successive signalized intersections in Florida for 2012–2014 and matched 4 years of nighttime and daylight crash data (2011–2014). Random parameter negative binomial models were estimated for both nighttime and daylight crash frequencies. The expected night-to-day crash odds ratio, as an equivalent of CMF, was derived from the fitted models with the correction of estimation variances. The confidence intervals (CIs) of the developed CMF were estimated using the Cox method.Results: The coefficient of the mean of horizontal illuminance is significantly negative in the nighttime model. The coefficients of the standard deviation of horizontal illuminance are significantly positive and normally distributed in both the nighttime and daylight models. The significance of the standard deviation in the daylight model captures the confounding effects—a high standard deviation correlates with high traffic exposures, poor safety design standards, and low maintenance quality. The CMF based on the expected daylight-to-day odds ratio was developed as an exponential function of the increments and the increment squares of the mean and the standard deviation of horizontal illuminance. Its 95% CIs indicate that the CMF is almost significant over the whole range. Other significant variables contributing to nighttime crash risk include annual average daily traffic, truck percentage, segment length, access density, undivided roads, and urban/city limits.Conclusions: Horizontal illuminance characteristics have a significant impact on nighttime crash risk on roadway segments. An increase in the mean of horizontal illuminance, indicating an improvement in average lighting level, tends to decrease nighttime crash risk; an increase in the standard deviation, representing a poor uniformity of lighting pattern on a roadway segment, is more likely to raise nighttime crash risk. Because the 2 measures are strongly correlated in a low mean range (<0.44 fc), the 2 photometric measures need to be considered together to interpret the safety effects of lighting patterns. The standard deviation shows better performance in measuring lighting uniformity on a roadway segment than the traditional ratios (max-to-min and mean-to-min). However, a new photometric measure is needed to capture the true lighting pattern influencing driver vision at night.
机译:目的:在美国公路系统上持续夜间坠毁。道路照明,通过补充车辆前灯,提供额外的可视性,已被确定为改善夜间安全的有效对策。然而,现有文献没有对街道段夜间碰撞发生的街道照明光度特性的效果彻底了解。本研究旨在调查巷道段光度测量措施和夜间碰撞风险之间的关系,并开发碰撞修改函数/因子(CMF)。方法:研究小组在佛罗里达州的2个连续信号交叉路口之间收集了440道路段的水平照度数据2012 - 2014年,并匹配4年的夜间和日光崩溃数据(2011-2014)。估计随机参数负二项式模型夜间和日光碰撞频率。预期的夜间碰撞赔率比,作为CMF的相当于拟合模型,校正估计差异。使用COX方法估计显影CMF的置信区间(CIS)。结果:夜间模型中水平照度的平均值的系数显着负。水平照度的标准偏差系数显着呈正且通常在夜间和日光模型中分布。日光模型中标准偏差的重要性捕获了混淆效应 - 高标准偏差与高交通曝光,安全设计标准差和低维护质量相关。基于预期的日落达到差距的CMF被开发为增量的指数函数和水平照度的平均值和标准偏差的指数函数。它的95%CIS表明CMF在整个范围内几乎显着。有助于夜间碰撞风险的其他重要变量包括年平均每日交通,卡车百分比,分段长度,访问密度,未分割的道路和城市/城市限制。结论:水平照度特性对道路段的夜间碰撞风险产生重大影响。水平照度的平均值的增加,表明平均照明水平的改善,往往会降低夜间碰撞风险;标准偏差的增加,代表道路段的照明模式均匀性差,更有可能提高夜间碰撞风险。因为在低平均范围(<0.44Fc)中,2个措施强烈相关,所以需要将2个光度测量措施考虑在一起以解释照明模式的安全效果。标准偏差显示出比传统比率(MAX-TO-MIN和MIN)测量道路片段上的照明均匀性的更好性能。然而,需要一种新的光度测量来捕获在夜间影响驾驶员视觉的真正照明模式。

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