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Environmental Impact of Combined Variable Speed Limit and Lane Change Control: A Comparison of MOVES and CMEM Model

机译:组合速度限制和车道变化控制的环境影响:移动和CMEM模型的比较

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Highway congestion is detrimental to traffic mobility and has negative impact on the environment. Variable speed limit (VSL) control is an approach that aims to reduce the impact of congestion by controlling the speed of traffic along the highway lanes. In this study, we evaluate the environmental impact of a combined variable speed limit and lane change control strategy with two different fuel consumption/emission models: the EPA model MOVES and CMEM developed by the University of California at Riverside. Microscopic Monte-Carlo simulations of traffic on I-710 freeway are used to demonstrate the environment effect of the combined control method. Both environmental models are used to evaluate fuel consumption and tailpipe emissions with and without the combined control strategy. Despite some differences between the two models, the evaluation results of both models confirm the benefits of the combined variable speed limit and lane change control strategy.
机译:公路拥堵对交通流动性有害,对环境产生负面影响。可变速度限制(VSL)控制是一种方法,旨在通过控制沿着公路车道的交通速度来减少拥塞的影响。在这项研究中,我们评估了两个不同的燃料消耗/排放模型的组合变速极限和车道变化控制策略的环境影响:EPA模型移动和CMEM由加州大学在滨江开发。 Microscopic Monte-Carlo I-710高速公路交通模拟用于展示组合控制方法的环境效应。两个环境模型用于评估燃料消耗和尾管排放,而无需组合的控制策略。尽管两种模型之间存在一些差异,但两种模型的评估结果确认了组合的变速极限和车道变化控制策略的好处。

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