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Field operational testing of ECO-approach technology at a fixed-time signalized intersection

机译:固定时间信号交叉口的ECO方法技术的现场操作测试

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As part of a number of Intelligent Transportation (ITS) applications aimed at providing an environmental benefit, eco-approach technology is one that is feasible in the near-term. An eco-approach application uses Signal Phase and Timing (SPaT) and intersection map information of signalized intersections to provide drivers with recommendations in order to encourage “green” driving while approaching, passing through, and departing the intersections. Upon receiving SPaT information, invehicle systems calculate and provide speed advice to the driver, allowing the driver to adapt the vehicle''s speed to pass through the upcoming signal on green or to decelerate to a stop in the most eco-friendly manner. Eco-approach methods have been proposed and simulated showing promising results. In this study, both simulation experimentation and field operational testing have been carried out to demonstrate the eco-approach application and to quantify its potential fuel and carbon dioxide (CO2) savings. Furthermore, it has been shown that a communication platform based on a 4G/LTE network link and a cloud-based server infrastructure is effective and sufficient for this kind of application. It was found in both the simulation experiment and the field operational testing that on average 14% fuel and CO2 savings can be achieved.
机译:作为旨在为环境带来益处的许多智能交通(ITS)应用程序的一部分,生态方法技术是近期可行的技术。一个生态方法应用程序使用信号相位和定时(SPaT)以及信号交叉口的交叉口地图信息为驾驶员提供建议,以鼓励他们在接近,通过和离开交叉口时进行“绿色”驾驶。收到SPaT信息后,车辆系统会计算并向驾驶员提供速度建议,从而使驾驶员能够调整车辆的速度,以通过即将到来的绿色信号或以最环保的方式减速至停车。已经提出并模拟了生态方法,显示出令人鼓舞的结果。在这项研究中,已经进行了模拟实验和现场操作测试,以证明该生态方法的应用并量化其潜在的燃料和二氧化碳(CO2)节省量。此外,已经表明,基于4G / LTE网络链路和基于云的服务器基础设施的通信平台对于这种应用是有效且足够的。在模拟实验和现场运行测试中均发现,平均可节省14%的燃料和二氧化碳。

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