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Roadworks Warning—Closure of a Lane, the Impact of C-ITS Messages

机译:道路工程警告-封闭车道,C-ITS消息的影响

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By now, it is widely acknowledged among stakeholders and academia that infrastructures will have to be composed both by a physical component and a digital one. The deployment of technologies exploiting dedicated short-range communications is viewed as the most cost-effective solution to face the foreseen growth of mobility. Still, little has been done to define the best implementation logic of DSRC. Aim of this paper is to frame the possible impacts arising by the implementation of a cooperative intelligent transport system (C-ITS)-use case: roadworks warning—closure of a lane, and, in order to achieve this result, microsimulations are exploited. The results are intended to support both road operators and car-makers in defining the best operational logics and the possible benefits achievable by presenting the cooperative message at a certain distance for certain market penetrations. Moreover, if the C-ITS message actually entails benefits or simply disrupts the upstream traffic should be assessed in advance, before implementing the system. The obtained results show that the risk of disruption and of reduction in traffic efficiency arises at lower market penetration levels. Nevertheless, a consistent trend in delay reduction is recorded upstream the roadworks, the highest reduction being equal to 8.66%. Moreover, the average speed at the roadworks entrance on the closing lane increases by a difference equal to around 10 km/h, while the average time in the queue at the highest market penetration reduces by 60 s on the open lane and 25 s on the closing one. These presented results reflect the way the traffic shifts from the slow to the fast lane thanks to the C-ITS system and effectively frames both the potentialities and the risks of the system.
机译:到现在为止,利益相关者和学术界已经普遍认识到,基础架构必须由物理组件和数字组件组成。部署专用短距离通信技术的部署被认为是面对可预见的移动性增长的最具成本效益的解决方案。尽管如此,定义DSRC的最佳实现逻辑的工作还很少。本文的目的是对实施协作式智能运输系统(C-ITS)的用例所产生的可能影响进行框架分析:道路工程警告-封闭车道,并且为了实现此结果,我们使用了微仿真。结果旨在支持道路运营商和汽车制造商定义最佳运营逻辑以及通过针对特定市场渗透距离一定距离呈现合作信息来实现的可能收益。此外,如果C-ITS消息确实带来了好处或只是造成了干扰,则应在实施系统之前预先评估上游流量。获得的结果表明,在较低的市场渗透水平下会出现破坏和降低交通效率的风险。然而,在道路工程上游记录到减少延迟的趋势是一致的,最高减少幅度为8.66%。此外,封闭行车道上的道路工程入口处的平均速度增加了大约10 km / h的差异,而市场渗透率最高的队列中的平均时间在开放行车道上减少了60 s,在开放行车道上减少了25 s。关闭一个。这些呈现的结果反映了借助C-ITS系统,交通从慢车道转变为快速车道的方式,并有效地构架了系统的潜力和风险。

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