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Harnessing Vehicular Broadcast Communications: DSRC-Actuated Traffic Control

机译:利用车载广播通信:DSRC驱动的交通控制

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Traffic congestion in major cities around the globe is a daunting problem that is getting worse as the speed of urbanization keeps increasing. The role of traffic lights (TLs) at intersections in regulating flows cannot be underestimated. Even though there are a variety of actuated traffic signals based on cameras or loop detectors, the vast majority of existing TLs in the world employ a timer-based decision logic which is clearly not very effective. In this paper, we present a new scheme for controlling traffic at intersections, which is known as dedicated short-range communications (DSRCs)-actuated traffic control. The proposed approach leverages the presence of DSRC radios in vehicles and gives priority (by displaying green light) to approaches (roads) that include DSRC-equipped vehicles (such as 10% or 20% of vehicles having DSRC radios). Using this priority mechanism, it is shown that the average waiting time at each TL can be significantly reduced. This, in turn, can reduce the average commute time of urban workers during rush hours substantially. One of the great advantages of the presented approach is that it can function well with even a low percentage of DSRC-equipped vehicles. Given that many industry forecasts predict a gradual penetration rate for the DSRC technology, this is a very attractive feature. It is also shown that the proposed new approach leads to a cost-effective solution for urban traffic control since the hardware and software platforms needed for its implementation are low cost.
机译:全球主要城市的交通拥堵是一个令人生畏的问题,随着城市化速度的不断提高,这一问题正变得越来越严重。在交叉路口的交通信号灯(TL)在调节流量中的作用不可低估。即使有许多基于摄像机或环路检测器的激活交通信号,世界上绝大多数现有的TL仍采用基于计时器的决策逻辑,这显然不是很有效。在本文中,我们提出了一种控制交叉路口交通的新方案,称为专用短距离通信(DSRC)驱动的交通控制。所提出的方法利用了车辆中DSRC无线电的存在,并优先(通过显示绿灯)优先于包括配备DSRC的车辆(例如,具有DSRC无线电的车辆的10%或20%)的进场(道路)。使用这种优先级机制,可以显示每个TL的平均等待时间可以大大减少。反过来,这可以大大减少高峰时段城市工人的平均通勤时间。所提出的方法的巨大优点之一是,即使配备DSRC的车辆比例很小,它也可以很好地发挥作用。鉴于许多行业预测都预测DSRC技术会逐渐普及,因此这是一个非常吸引人的功能。还表明,由于实施该方法所需的硬件和软件平台成本较低,因此提出的新方法可为城市交通控制提供一种经济高效的解决方案。

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