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A logic-based speed limit control algorithm for Variable Speed Limits to reduce traffic congestion at bottlenecks

机译:一种基于逻辑的速度限制控制算法,可变速度限制,以减少瓶颈的交通拥堵

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This paper proposes a logic-based control algorithm for Variable Speed Limits (VSLs) in order to reduce or avoid traffic jams created at bottlenecks. The proposed controller estimates, for each controller time step, the number of vehicles that have to be held back or released by the VSLs in order to maximize the outflow of the bottleneck (avoiding the capacity drop). Afterward, based on the estimated number of vehicles, the VSLs are increased or decreased sequentially. The proposed controller uses a feed-forward structure that allows to anticipate the future evolution of the bottleneck density in order to avoid or reduce traffic breakdowns. As a result, although the implementation of the controller is quite easy with an almost instantaneous computation time, the performance of the controller is effective in reducing Total Time Spent (TTS). The proposed controller is tested, using the macroscopic traffic flow model METANET, for 10 scenarios and the results are compared with the ones obtained with the Mainstream Traffic Flow Control (MTFC) algorithm, and with the optimal solution. The simulations show that the proposed controller is able to approach the optimal behavior and that its behavior is quite robust (especially comparing with MTFC) in cases where different demands are considered.
机译:本文提出了一种基于逻辑的控制算法,用于可变速度限制(VSL),以便减少或避免在瓶颈创建的交通拥堵。所提出的控制器估计,对于每个控制器时间步骤,必须由VSL被阻挡或释放的车辆的数量,以便最大化瓶颈的流出(避免容量下降)。之后,基于估计的车辆数量,VSL依次增加或减少。该拟议控制器使用前馈结构,该方向结构允许预测瓶颈密度的未来演变,以避免或减少交通故障。结果,尽管使用几乎瞬时计算时间的控制器的实现非常简单,但是控制器的性能在减少总时间(TTS)的过程中有效。使用宏观流量流模型元素测试所提出的控制器,对于10个方案,并将结果与​​主流交通流控制(MTFC)算法获得的结果进行比较,以及最佳解决方案。模拟表明,在考虑不同需求的情况下,所提出的控制器能够接近最佳行为,并且其行为非常坚固(特别是与MTFC相比)。

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