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Cooperative U-Turn Merging Behaviors and Their Impacts on Road Traffic in CVIS Environment

机译:合作u逆合并行为及其对CVIS环境中道路交通的影响

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摘要

U-turn behavior of vehicle is one of the main causes of urban traffic congestion and accidents. A collaborative U-turn merging control algorithm is studied with collision avoidance and delay minimization for vehicles under Cooperative Vehicle Infrastructure System (CVIS) environment. Two control strategies, zip merging and platoon merging control, are proposed. The applicability of these two strategies is compared from the perspective of efficiency and driving comfort. The cellular automaton simulation system composed of a two-way four-lane traffic flow with a U-turn facility in middle of road is established with cooperative control algorithm imbedded. The influence of cooperative U-turn merging behaviors on traffic performance is evaluated by analyzing the arrival rates of main lane and U-turn vehicles and their relationship between one another. The simulation results show that the arrival rate of vehicles on target lane has a great impact on traffic delay. The cooperative control can improve the traffic flow only in the condition that the arrival rate of vehicles on target lane is less than 0.7. It provides some practical references for transportation agencies to meet efficiency requirements of the U-turn section when they apply cooperative control strategy.
机译:车辆的U形行为是城市交通拥堵和事故的主要原因之一。研究了协作U形逆合并控制算法,采用协作车辆基础设施系统(CVIS)环境下车辆的碰撞避免和延迟最小化。提出了两种控制策略,邮政编程和分列合并控制。将这两种策略的适用性与效率和驾驶舒适的角度比较。通过嵌入式控制算法建立了由道路中间的u匝设施的双向四通道交通流量组成的蜂窝自动机仿真系统。通过分析主车道和U形车辆的到货率及彼此之间的关系来评估合作官能汇率行为对交通绩效的影响。仿真结果表明,目标车道上车辆的到货率对交通延误产生了很大影响。合作控制可以仅在目标车道上的车辆到达率小于0.7的条件下改善交通流量。它为运输机构提供了一些实际参考,以满足u匝段申请合作控制策略的效率要求。

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