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Comprehensive Evaluation of Feedback-Based Freeway Ramp-Metering Strategy by Using Microscopic Simulation: Taking Ramp Queues into Account

机译:基于微观仿真的基于反馈的高速公路匝道计量策略综合评估:考虑匝道队列

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One of the major criticisms of ramp metering has been delay caused on the ramps because of the queues created by ramp control strategies. Recently, several researchers proposed strategies that explicitly consider ramp queues when metering rates are determined. An isolated "feedback"-based ramp-metering strategy (mixed control) is presented. In addition to regulation of ramp input from the freeway, the strategy calls for regulation of ramp queues by explicitly incorporating them into the model. Mixed control is tested using PARAMICS, a microscopic traffic simulation package, on a calibrated test network located in Hayward, California. In addition to mixed control, ALINEA and new control are implemented. Because the focus here is on evaluation of isolated ramp control strategies, change in demand caused by ramp metering is not considered. The system is defined as the upstream, downstream, and ramp links around the metered ramp. The performance of two freeway demand patterns (congested and overcongested) is compared. From the simulation results, all the strategies tested were found to be quite effective in optimizing freeway traffic conditions [reduction in mean congestion duration on the freeway downstream link, mean downstream occupancy, and travel time (upstream and downstream links)]. However, mixed control produced the best system results (upstream, downstream, and ramp links) by achieving optimal flow on the highway while keeping the queue length on the ramp small enough to prevent spillover onto the arterial network.
机译:斜坡计量的主要批评之一是由于斜坡控制策略造成的排队,导致斜坡延迟。最近,一些研究人员提出了在确定计量​​速率时明确考虑坡道排队的策略。提出了一种基于“反馈”的隔离斜坡计量策略(混合控制)。除了调节高速公路的匝道输入外,该策略还要求通过将匝道队列明确纳入模型中来对匝道队列进行调节。混合控制使用PARAMICS(微观交通模拟程序包)在位于加利福尼亚州海沃德的校准测试网络上进行测试。除了混合控制之外,还执行ALINEA和新控制。因为这里的重点是评估孤立的斜坡控制策略,所以不考虑由斜坡计量引起的需求变化。该系统定义为围绕计量坡道的上游,下游和坡道链接。比较了两种高速公路需求模式(拥挤和过度拥挤)的表现。从模拟结果中,发现所有测试的策略在优化高速公路交通状况方面都非常有效[减少了高速公路下游连接线的平均拥堵持续时间,平均下游占用量和行驶时间(上游和下游连接线)]。但是,混合控制通过在高速公路上实现最佳流量,同时保持匝道上的队列长度足够小以防止溢出到动脉网络上,从而产生了最佳的系统结果(上游,下游和匝道链接)。

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