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Integrated Variable Speed Limit (VSL) and Ramp Metering (RM) Control Strategy Based on Optimal Collision Probability Prediction

机译:基于最佳碰撞概率预测的集成限速(VSL)和匝道计量(RM)控制策略

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Traffic congestion and collision problems had been focused widely by transportation researchers. Various traffic management strategies such as Variable Speed Limit (VSL), ramp metering (RM), etc., have been deployed to mitigate traffic congestion and collision. However, most previous studies focused on the impacts of VSL or RM control separately. Therefore, in this study, a model predictive integrated VSL and RM control strategy based on collision probability optimization was proposed. The proposed control strategy predicts future traffic states and collision probability, and considers the optimum VSL and RM input simultaneously by minimizing collision probability. To quantify the safety and mobility impact, the proposed integrated control was implemented in microscopic simulation and compared with VSL control, RM control and without any control scenario respectively. The results indicate that the integrated VSL and RM control strategy can improve safety by approximately 41% and mobility by approximately 13%. In conclusion, the proposed integrated VSL and RM control strategy was better than VSL control strategy and RM control strategy independently.
机译:交通拥堵和碰撞问题已被交通研究人员广泛关注。已经部署了各种交通管理策略,例如变速限制(VSL),匝道计量(RM)等,以缓解交通拥堵和冲突。但是,大多数以前的研究分别关注VSL或RM控制的影响。因此,在本研究中,提出了一种基于碰撞概率优化的模型预测VSL和RM集成控制策略。所提出的控制策略可预测未来的交通状况和碰撞概率,并通过最小化碰撞概率同时考虑最佳的VSL和RM输入。为了量化对安全和机动性的影响,在微观仿真中实施了建议的集成控制,并分别与VSL控制,RM控制和没有任何控制方案进行了比较。结果表明,集成的VSL和RM控制策略可以将安全性提高约41%,将移动性提高约13%。总之,所提出的集成的VSL和RM控制策略优于VSL控制策略和RM控制策略。

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