论文标题

交通网络中车辆速度轨迹的分布式库拉莫托自同步

Distributed Kuramoto Self-Synchronization of Vehicle Speed Trajectories in Traffic Networks

论文作者

Rodriguez, Manuel, Fathy, Hosam

论文摘要

本文为交通网络中的连接和自动化车辆提供了分布式同步策略。该策略认为车辆从一个十字路口传播到下一个海浪。每个波映射的相位角度和频率分别为其位置和速度。目的是同步流量,以使相交的交通波在每个交叉路口都存在。这确保了交叉点的安全集体导航。车辆通过V2X基础架构共享其相角,并使用库拉马托方程将这些角度同步。这是耦合振荡器自同步的经典模型。设计了不同道路上车辆的相位和位置之间的映射,以使库拉莫托同步确保安全的交点导航。每辆车都使用受约束的最佳控制策略在即将到来的交叉路口实现其所需的目标库拉莫托阶段。总体结果是一种分布式流量同步算法,该算法同时解决了传统上独立解决的两个挑战,即:在单个交集处协调交叉,并协调相邻交叉点之间的交通流量。与具有传统交通信号灯的网络相比,模拟研究突出了该策略对燃料消耗和交通延迟时间的积极影响。

This paper presents a distributed synchronization strategy for connected and automated vehicles in traffic networks. The strategy considers vehicles traveling from one intersection to the next as waves. The phase angle and frequency of each wave map to its position and velocity, respectively. The goal is to synchronize traffic such that intersecting traffic waves are out of phase at every intersection. This ensures the safe collective navigation of intersections. Vehicles share their phase angles through the V2X infrastructure, and synchronize these angles using the Kuramoto equation. This is a classical model for the self-synchronization of coupled oscillators. The mapping between phase and location for vehicles on different roads is designed such that Kuramoto synchronization ensures safe intersection navigation. Each vehicle uses a constrained optimal control policy to achieve its desired target Kuramoto phase at the upcoming intersection. The overall outcome is a distributed traffic synchronization algorithm that simultaneously tackles two challenges traditionally addressed independently, namely: coordinating crossing at an individual intersection, and harmonizing traffic flow between adjacent intersections. Simulation studies highlight the positive impact of this strategy on fuel consumption and traffic delay time, compared to a network with traditional traffic light timing.

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