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Road user behaviour changes following a self-explaining roads intervention

机译:自我解释的道路干预后,道路使用者的行为发生了变化

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The self-explaining roads (SER) approach uses road designs that evoke correct expectations and driving behaviours from road users to create a safe and user-friendly road network. Following the implementation of an SER process and retrofitting of local and collector roads in a suburb within Auckland City, lower speeds on local roads and less variation in speed on both local and collector roads were achieved, along with a closer match between actual and perceived safe speeds. Preliminary analyses of crash data shows that the project has resulted in a 30% reduction crash numbers and an 86% reduction in crash costs per annum, since the road changes were completed. In order to further understand the outcomes from this project, a study was carried out to measure the effects of the SER intervention on the activity and behaviour of all road users. Video was collected over nine separate days, at nine different locations, both before and after SER construction. Road user behaviour categories were developed for all potential road users at different location types and then used to code the video data. Following SER construction, on local roads there was a relatively higher proportion of pedestrians, less uniformity in vehicle lane keeping and less indicating by motorists along with less through traffic, reflecting a more informal/low speed local road environment. Pedestrians were less constrained on local roads following SER construction, possibly reflecting a perceptually safer and more user-friendly environment. These behaviours were not generally evident on collector roads, a trend also shown by the previous study of speed changes. Given that one of the objectives of SER is to match road user behaviour with functionally different road categories, the road user behaviour differences demonstrated on different road types within the SER trial area provides further reinforcement of a successful SER trial.
机译:自我解释的道路(SER)方法使用的道路设计唤起了道路使用者的正确期望和驾驶行为,从而创建了安全且人性化的道路网络。在执行SER流程并在奥克兰市郊区对本地和收集者的道路进行了改造之后,本地道路的速度降低了,本地和收集者的道路速度变化也越来越小,实际安全与感知安全之间的匹配程度也越来越高速度。事故数据的初步分析表明,自从道路变更完成以来,该项目每年减少了30%的事故发生次数,并减少了86%的事故成本。为了进一步了解该项目的结果,进行了一项研究,以评估SER干预对所有道路使用者的活动和行为的影响。在SER构建之前和之后,分别在9个不同位置的9天中分别收集了视频。针对不同位置类型的所有潜在道路使用者开发了道路使用者行为类别,然后将其用于编码视频数据。 SER建成后,当地道路上的行人比例相对较高,行车道保持的统一性较低,驾车者的指示较少,而通过的交通较少,这反映了当地道路的非正式化/低速化。 SER建成后,行人在当地道路上的约束减少了,这可能反映了在感知上更安全,更友好的环境。这些行为在收集者道路上通常并不明显,以前的速度变化研究也显示了这种趋势。鉴于SER的目标之一是使道路使用者的行为与功能上不同的道路类别相匹配,因此SER试验区域内在不同道路类型上表现出的道路使用者行为差异为成功的SER试验提供了进一步的加强。

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