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Speed Trajectory Optimization for a Heavy-Duty Truck Traversing Multiple Signalized Intersections: A Dynamic Programming Study

机译:重型卡车穿越多个信号交叉口的速度轨迹优化:动态规划研究

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This paper explores the fuel savings that can be achieved by optimizing the speed trajectory of a heavy-duty truck traversing a sequence of intersections, under the assumptions that the behavior of the leading traffic and the timing of the traffic lights is known. Specifically, we look at the impact of corridor topology (i.e. green cycle lengths, phase offsets) on the expected fuel savings of the optimized trajectories. This is an important area of research because vehicle-to-vehicle (V2V) and vehicle-to-infrastructure (V2I) technology has the potential to allow autonomous vehicles to reduce fuel consumption, especially in urban and sub-urban driving scenarios. The literature tackles the problem of arterial corridor trajectory optimization, and shows the potential fuel saving benefits. However, previous research focuses primarily on passenger vehicles, and often limits its findings to specific case studies. The main contribution of this paper is to offer an estimate of the fuel saving potential - for heavy-duty trucks and under different corridor characteristics - of optimizing trajectories in an urban arterial with V2V and V21 capabilities.
机译:本文探讨了在假设领先的交通行为和交通信号灯的时机为前提的情况下,通过优化重型卡车横穿一系列路口的速度轨迹可实现的燃油节省。具体而言,我们研究了走廊拓扑结构(即绿色循环长度,相位偏移)对优化轨迹的预期燃料节省的影响。这是一个重要的研究领域,因为车对车(V2V)和车对基础设施(V2I)技术具有使自动驾驶汽车减少燃油消耗的潜力,尤其是在城市和郊区驾驶的情况下。文献解决了动脉走廊轨迹优化的问题,并显示了潜在的节油效益。但是,先前的研究主要集中在乘用车上,并且常常将其发现局限于特定的案例研究。本文的主要贡献在于,通过优化具有V2V和V21功能的城市干线,可为重型卡车和在不同走廊特性下节省燃油的潜力做出估算。

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