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Evaluation and modelling of the traffic flow effects of truck platooning

机译:卡车排交通流动效应的评价与建模

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With automated and cooperative driving making its breakthrough, and related systems in fast development, their future influence and impact on roads and traffic may be extensive. Truck platooning is such an application that relies on the development of Cooperative Adaptive Cruise Control (CACC) and is said to be practice ready. While the main advantages of truck platooning lie in emission and energy reduction, claims are also being made for the influence on traffic flow. In this paper, we pose hypotheses based on some of the main claims. We also attempt to substantiate and give quantitative proof of the potential effects of truck platooning on traffic flow performance. The simulation model LMRS-IDM+ is extended to encompass the main influencing dynamics related to potential effects of truck platooning, based on empirical findings. The effects of truck platooning were tested for the influence of traffic states, truck gap settings, platoon sizes, and the share of equipped trucks. This resulted in outcomes regarding the total traffic performance, the performance of traffic at ramps, and the ability of a platoon to remain platooning as part of a case experiment performed on a part of the Trans-European ITS Corridor. The results showed that truck platooning may have a small negative effect on the total non-saturated traffic flow, however with a much larger negative effect on saturated traffic flow. However, drivers may be reluctant to platoon in saturated traffic in any case. The ability of inflowing traffic to merge at on-ramps was found to be affected by truck platoons, with platoon disengagements occurring under various conditions. The applied gap settings for platooning trucks did not significantly affect the merge time, while a higher gap did lead to a higher number of disengagements. The ability of trucks to platoon was positively affected by a greater percentage of equipped trucks and by larger platoon sizes. Shorter gap times also slightly improved the ability of trucks to remain in platooning formation. Finally, recommendations are given to improve platoon strategies and for policymakers to only allow truck platooning outside of busy (near-) saturated traffic, even though drivers may be reluctant to use the system in these conditions. Also, recommendations are made to investigate potential differences in the effects between the European and American contexts for truck-platooning.
机译:随着自动化和合作驾驶的突破,以及快速发展中的相关系统,其未来的影响和对道路和交通的影响可能是广泛的。卡车排列是一种依赖于合作自适应巡航控制(CACC)的发展的应用,并据说准备好实践。虽然卡车排的主要优点在于排放和能量减少,但也正在对交通流量的影响进行索赔。在本文中,我们基于一些主要索赔姿势假设。我们还试图证实并赋予卡车排在交通流性能下的潜在效果的定量证明。仿真型号LMRS-IDM +延长了与经验研究结果的主要影响与卡车排的潜在效果相关的主要影响动态。测试了卡车排列的影响,对交通态,卡车隙设置,排尺寸和装备卡车的份额进行了影响。这导致了关于总交通绩效的结果,坡道上的交通绩效以及排在逐欧走廊的一部分实验的一部分作为案例实验的一部分。结果表明,卡车排中可能对总不饱和的交通流量具有小的负面影响,但对饱和的交通流量有更大的负面影响。然而,在任何情况下,司机都可能不愿意在饱和的流量中排列。发现流量在坡道上合并的能力受到卡车粘盘的影响,在各种条件下发生了排脱离。排卡车的应用间隙设置没有显着影响合并时间,而更高的差距使得较高的脱离脱离。卡车到排汇的能力受到更大百分比的装备卡车和较大的排尺寸的影响。较短的差距时间也略微提高了卡车留在排列中的能力。最后,提出建议改善排策略和政策制定者,只允许卡车排在忙碌(近)饱和的流量之外,即使司机可能不愿意在这些条件下使用该系统。此外,建议调查欧洲和美国语境对卡车排之间的影响的潜在差异。

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