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Combined Variable Speed Limit and Lane Change Control for Truck-Dominant Highway Segment

机译:卡车主导公路段组合的变速极限和车道变化控制

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Traffic demand of trucks is rapidly increasing on highway networks, which harms highway traffic mobility, safety and the environment. Variable speed limit (VSL) control is considered to be able to improve the traffic condition in truck-dominant highway segments. However previous research reported rather mixed effects of VSL controller on traffic mobility. While some studies reported improvements in travel time due to the use of VSL control, others reported either no improvement or small deterioration in travel time. In this paper, we demonstrated that the lack of improvement on travel time is due to lane changes that are taking place close to the bottleneck leading to severe capacity drop. We developed a combined lane change and VSL control strategy that recommends lane changes in advance to relief capacity drop. Microscopic Monte-Carlo simulations of traffic on I-710 freeway with high truck demand were used to demonstrate that this combined control strategy is able to generate consistent improvements with respect to travel time, safety and environmental impact under different traffic conditions and incident scenarios.
机译:在公路网络上迅速增加卡车的交通需求,危害公路交通流动,安全和环境。可变速度限制(VSL)控制被认为能够改善卡车主导公路段中的交通状况。然而,以前的研究报告了VSL控制器对交通移动性的相当混合影响。虽然一些研究报告了由于使用VSL控制而在旅行时间的改善,但其他人报告的旅行时间没有改善或小恶化。在本文中,我们证明旅行时间缺乏改善是由于靠近导致严重容量下降的瓶颈的车道变化。我们开发了一个综合车道变化和VSL控制策略,推荐车道提前改变以浮雕容量下降。 Microscopic Monte-Carlo仿真I-710高速公路具有高卡车需求的高速公路,证明这种组合的控制策略能够在不同的交通状况和事件场景下对旅行时间,安全和环境影响产生一致的改进。

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