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首页> 外文期刊>Canadian Journal of Civil Engineering >Assessing the mobility benefits of proactive optimal variable speed limit control during recurrent and non-recurrent congestion
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Assessing the mobility benefits of proactive optimal variable speed limit control during recurrent and non-recurrent congestion

机译:评估经常性和非经常性交通拥堵时主动最优变速限制控制的机动性优势

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摘要

Over the past few decades, several active traffic control methods have been proposed to improve freeway efficiency at bottleneck locations. Variable speed limit (VSL) is one of these effective controls. Previous studies have evaluated VSL control, but primarily during recurrent congestion only. This study focuses on evaluating the performance of VSL control for both recurrent and non-recurrent congestion. To assess the effectiveness of a previously proposed VSL control in a real-world situation, this study has three evaluation objectives: (1) examine the control performance when recurrent and (or) non-recurrent congestion occurs; (2) assess the effectiveness of the control when a queue encounters the VSL sign; and (3) consider the impact of system detection delay in VSL control. Comparative experiments for Whitemud Drive in Edmonton, Alberta, Canada, are simulated in the VISSIM platform, and traffic performance is compared among scenarios with and without control. The simulation results show that VSL improves mobility for both recurrent and non-recurrent congestion. The VSL control reduces total travel time, and improves total travel distance and total flow. Furthermore, it slows down the shockwave propagation speed, improves the average speed on most of the freeway segments, and reduces the duration of traffic recovery.
机译:在过去的几十年中,已经提出了几种主动的交通控制方法来提高瓶颈位置的高速公路效率。变速极限(VSL)是这些有效的控制措施之一。先前的研究已经评估了VSL控制,但主要是在反复充血期间。这项研究的重点是评估VSL控制对于复发和非复发性充血的性能。为了评估在现实情况下先前提出的VSL控制的有效性,本研究具有三个评估目标:(1)在经常性和(或)非经常性拥塞发生时检查控制性能; (2)当队列遇到VSL标志时,评估控制的有效性; (3)考虑系统检测延迟对VSL控制的影响。在VISSIM平台上模拟了加拿大艾伯塔省埃德蒙顿市Whitemud Drive的对比实验,并比较了有无控制情况下的交通性能。仿真结果表明,VSL改善了经常性和非经常性交通拥堵的流动性。 VSL控制装置减少了总行程时间,并改善了总行程距离和总流量。此外,它减慢了冲击波的传播速度,提高了大多数高速公路路段的平均速度,并减少了交通恢复的时间。

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