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Distributed dynamic lane reversal and rerouting for traffic delay reduction

机译:分布式动态通道反转和REROUTING用于交通延迟减少

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摘要

Traffic congestion is a major source of delays in modern road networks. Motivated by this, we propose two distributed algorithms to reduce delays: a dynamic lane reversal algorithm and a rerouting algorithm. When there is a density imbalance on a road, time can be saved by reallocating lanes from the less dense side to the more dense side, which motivates dynamic lane reversal. When a road has greater density than nearby roads, time can be saved by redirecting flow into the least congested roads, this motivates dynamic rerouting. Given a communication system between infrastructure and vehicles on the road, the local state of the network can be approximated and utilised by the algorithms to minimise travel time. In order to provide a better fundamental understanding of the system dynamics, we analyse equilibrium conditions for the system and prove convergence of the lane reversal algorithm to a critical point. Overall performance is also examined in simulation.
机译:交通拥堵是现代道路网络延误的主要来源。 推动了这一点,我们提出了两个分布式算法来减少延迟:动态通道逆转算法和重新路由算法。 当道路上存在密度不平衡时,可以通过将车道从较少的侧面重新分配到更密集的一侧来挽救时间,这激励动态车道逆转。 当道路比附近的道路更高的密度时,可以通过将流量重定向到最不拥挤的道路中来节省时间,这激励了动态的重新路由。 鉴于道路上的基础设施和车辆之间的通信系统,可以通过算法近似和利用网络的本地状态以最小化行程时间。 为了提供对系统动态的更好的基本理解,我们分析系统的平衡条件,并将车道逆转算法的收敛性证明是临界点。 还在模拟中检查了整体性能。

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