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Mitigating gas emissions at signalised intersections using wireless vehicle detectors

机译:使用无线车辆检测器减少信号交叉口的气体排放

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Traffic congestion on roads wastes travel times and increases fuel consumption as well as gas emissions which are dangerous to human health. This has led to growing concern about environmental protection and energy conservation and a number of studies to increase fuel economy and reduce gas emissions. To increase travel times so as to reduce fuel consumption and gas emissions, traffic signals at intersections must be well implemented. It is therefore necessary to employ the current technology of wireless sensor networks to enhance the optimisation of the signalised intersections so as to address such a concern. In this study, a vehicular traffic control model was developed to optimise a signalised intersection, using wireless vehicle detectors. Real-time traffic volume gathered were analysed to obtain the peak hour traffic volume causing congestion. The intersection was modelled and simulated in Synchro7 as an actuated signalised model using results from the analysed data. The model for morning peak and evening peak periods gave optimal cycle lengths which result in the reduction of gas emissions, fuel consumption and delay at the intersection.
机译:道路上的交通拥堵浪费了旅行时间,增加了燃料消耗以及对人体健康有害的气体排放。这导致人们越来越关注环境保护和节能,并进行了许多研究以提高燃料经济性并减少气体排放。为了增加旅行时间以减少燃料消耗和气体排放,必须在十字路口处实施良好的交通信号。因此,有必要采用无线传感器网络的当前技术来增强信号交叉口的优化,以解决这一问题。在这项研究中,使用无线车辆检测器开发了一种车辆交通控制模型,以优化信号交叉口。分析收集到的实时流量,以获得导致拥堵的高峰时段流量。使用来自分析数据的结果,在Synchro7中将交叉路口建模和仿真为激励信号模型。早高峰时段和晚高峰时段的模型给出了最佳的循环长度,从而减少了气体排放,燃料消耗和交叉路口的延误。

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