华南理工大学学报(自然科学版) ›› 2025, Vol. 53 ›› Issue (8): 61-72.doi: 10.12141/j.issn.1000-565X.240491

• 智慧交通系统 • 上一篇    下一篇

偶发事故下人机混驾交通流的影响机理研究

张文会  施鑫涛  周舸   

  1. 东北林业大学 土木与交通学院,黑龙江 哈尔滨 150040

  • 出版日期:2025-08-25 发布日期:2025-01-24

A Study on the Impact Mechanism of Human-Machine Mixed Driving Traffic Flow Under Occasional Accident

ZHANG Wenhui  SHI Xintao  ZHOU Ge   

  1. School of Civil Engineering and Transportation, Northeast Forestry University, Harbin 150040, Heilongjinag, China

  • Online:2025-08-25 Published:2025-01-24

摘要:

为研究人工驾驶车辆(HDV)和智能网联自动驾驶车辆(CAV)组成的人机混驾交通流在偶发事故下的影响机理,本文改进KKW模型框架下的元胞自动机规则,引入考虑CAV类人行驶策略的同步因子,针对不同跟驰模式构建HDV和CAV跟驰规则;基于事故场景车辆换道需求,构建考虑中间车道选择意愿的HDV和CAV多车道自由换道策略,并建立考虑换道压力的强制换道规则;经过数值模拟仿真,分析不同交通量、CAV渗透率、CAV事故信息感知范围、CAV类人行驶策略对交通流的影响。研究结果表明:CAV的增加可以有效缓解偶发事故后交通流的拥堵,限制拥堵时空范围;在渗透率大于0.4的中、高交通量情形下,随着CAV事故信息感知范围的增加,合流区的拥堵空间逐渐分散,交通效率得到提高;随着CAV类人行驶策略由激进型到保守型过渡,人机混驾交通流的流量逐渐降低,排队缓行范围扩大,交通拥堵逐渐恶化,且随着时间的推移,各车道速度波动趋势逐渐趋同。

关键词: 交通工程, 偶发事故, 元胞自动机, 人机混驾交通流

Abstract:

In order to study the impact mechanism of human-machine mixed driving traffic flow composed of Human-Driven Vehicle (HDV) and Connected and Automated Vehicle (CAV) under occasional accident, this paper improves the cellular automata rules under the framework of the KKW model, and introduces the synchronization factor to consider the CAV human-like driving strategy, and constructs the HDV and CAV following rules for different following modes. Based on the demand of vehicle lane-changing in accident scenarios, it constructs the free lane-changing strategy of HDV and CAV multi-lane considering the willingness to choose the intermediate lanes, and establishes the mandatory lane-changing rule considering the pressure of lane-changing. And after numerical simulation, it analyzes the different traffic volumes, CAV penetration rates, CAV accident information sensing ranges and CAV human-like driving strategy on traffic flow. The results show that the increase of CAV can effectively alleviate the congestion of traffic flow after occasional accidents and limit the spatial and temporal scope of congestion. In the case of medium and high traffic volume with CAV penetration rate greater than 0.4, with the increase of CAV accident information sensing range, the congestion space in the merging area is gradually dispersed, and traffic efficiency is improved. With the transition of the CAV human-like driving strategy from aggressive to conservative, the flow of the human-machine mixed driving traffic flow is gradually reduced, and the range of slow queues expands, traffic congestion gradually worsens, and the trend of speed fluctuations in each lane gradually converges over time.


Key words: traffic engineering, occasional accident, cellular automata; human-machine mixed driving traffic flow