基于多车协同的环形交叉口自动驾驶车辆轮廓设计改进变道策略

D. Cao, C. Hu, N. Ding
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摘要

智能网联汽车(ICVs)是在车联网(IOV)和智能汽车的基础上发展起来的,基于车辆-道路-环境协同策略,已成为优化车辆交通、缓解交通拥堵的有效解决方案。本文根据交通环形交叉口车辆的行驶特性,提出了一种基于车辆轮廓(VP)的环形交叉口出口车辆变道策略。针对icv中存在的多源异构数据混合问题,首先定义了车辆轮廓(Vehicle Profile, VP),然后将多源异构数据用VP表示。针对实际应用中存在的标签权重问题,采用随机森林算法动态获取和更新车辆轮廓的标签权重。此外,将车辆轮廓的动态权值引入到变道决策中车辆收益函数的设计中,解决了以收益函数各部分的权值作为参数的问题。最后,通过SUMO在环形交叉口一般交通工况、拥挤交通工况和稀疏交通工况下对算法的性能进行了测试和验证。实验结果表明,与交通拥堵和稀疏交通流情况相比,该算法能更大程度地提高车辆在一般交通环境下的行驶效率和舒适性。同时,该算法验证了引入车辆轮廓对环形交叉口交通策略的优化效果。
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Design of Vehicle Profile for Autonomous Vehicles in Roundabouts used to improve Lane Change Strategy based on Multi-vehicle Collaboration
Intelligent and connected vehicles (ICVs) is developed based on Internet of Vehicles (IOV) and intelligent vehicles, has become an effective solution to optimize vehicle traffic and alleviate traffic congestion based on the collaborative strategy of vehicle - road - environment. This paper proposes a lane-changing strategy of vehicles at the exit of roundabout based on the Vehicle Profile(VP) which achieved by the driving characteristics of vehicles in traffic roundabout. Initially, Vehicle Profile(VP) is defined due to the hybrid problem of multi-source heterogeneous data existing in ICVs, then the multi-source heterogeneous data is represented by VP. Moreover, the random forest algorithm is used to dynamically obtain and update the label weight of Vehicle Profile because of the problem of label weight existing in the practical application. In addition, the dynamic weight of the Vehicle Profile is introduced into the design of the vehicle payoff function involved in lane change decision, which solves the problem that the weight of each part of the payoff function is used as a parameter. Finally, the performance of the algorithm is tested and verified by SUMO in roundabout general traffic conditions, congested traffic conditions and sparse traffic conditions. The experimental results show that this algorithm can improve the Efficiency and comfort of vehicle driving in general traffic environment more greatly compared with the situation of traffic congestion and sparse traffic flow. Meanwhile, this algorithm verifies the optimization effect of introducing Vehicle Profile on roundabout traffic strategy.
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