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Effect of adaptive cruise control systems on mixed traffic flow near an on-ramp

机译:自适应巡航控制系统对匝道附近混合交通流量的影响

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摘要

Mixed traffic flow consisting of vehicles equipped with adaptive cruise control (ACC) and manually driven vehicles is analyzed using car-following simulations. Simulations of merging from an on-ramp onto a freeway reported in the literature have not thus far demonstrated a substantial positive impact of ACC. In this paper cooperative merging for ACC vehicles is proposed to improve throughput and increase distance traveled in a fixed time. In such a system an ACC vehicle senses not only the preceding vehicle in the same lane but also the vehicle immediately in front in the other lane. Prior to reaching the merge region, the ACC vehicle adjusts its velocity to ensure that a safe gap for merging is obtained. If on-ramp demand is moderate, cooperative merging produces significant improvement in throughput (20%) and increases up to 3.6 km in distance traveled in 600 s for 50% ACC mixed flow relative to the flow of all-manual vehicles. For large demand, it is shown that autonomous merging with cooperation in the flow of all ACC vehicles leads to throughput limited only by the downstream capacity, which is determined by speed limit and headway time. (c) 2007 Elsevier B.V. All rights reserved.
机译:使用跟车模拟来分析由配备有自适应巡航控制(ACC)的车辆和手动驾驶的车辆组成的混合交通流。文献中报道的从匝道合并到高速公路的模拟到目前为止尚未证明ACC具有实质性的积极影响。在本文中,提出了ACC车辆的协作合并,以提高吞吐量并增加固定时间内的行驶距离。在这样的系统中,ACC车辆不仅感测相同车道中的在前车辆,而且还感测在另一车道中紧邻前方的车辆。在到达合并区域之前,ACC车辆会调整其速度以确保获得安全的合并间隙。如果匝道需求适中,那么对于50%ACC混合流量(相对于全手动车辆流量)而言,合作合并会显着提高吞吐量(20%),并在600 s内增加3.6 km的行驶距离。对于大需求,表明在所有ACC车辆的流量中进行自主合并与协作会导致吞吐量仅受下游容量的限制,而下游容量则由速度限制和前进时间决定。 (c)2007 Elsevier B.V.保留所有权利。

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