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高速公路混合交通流中具有自动驾驶功能的车辆的稳定性和安全性评估。

Stability and safety evaluation of mixed traffic flow with connected automated vehicles on expressways.

机构信息

School of Transportation and Logistics, Southwest Jiaotong University, Chengdu, Sichuan 610031, China; Institute of System Science and Engineering, Southwest Jiaotong University, Chengdu 611756, China; National Engineering Laboratory of Integrated Transportation Big Data Application Technology, Southwest Jiaotong University, Chengdu 611756, China; National United Engineering Laboratory of Integrated and Intelligent Transportation, Southwest Jiaotong University, Chengdu 611756, China.

School of Transportation and Logistics, Southwest Jiaotong University, Chengdu, Sichuan 610031, China; National Engineering Laboratory of Integrated Transportation Big Data Application Technology, Southwest Jiaotong University, Chengdu 611756, China; National United Engineering Laboratory of Integrated and Intelligent Transportation, Southwest Jiaotong University, Chengdu 611756, China.

出版信息

J Safety Res. 2020 Dec;75:262-274. doi: 10.1016/j.jsr.2020.09.012. Epub 2020 Nov 10.

Abstract

INTRODUCTION

Connected automated vehicles (CAVs) technology has deeply integrated advanced technologies in various fields, providing an effective way to improve traffic safety. However, it would take time for vehicles on the road to vehicles from human-driven vehicles (HDVs) progress to CAVs. Moreover, the Cooperative Adaptive Cruise Control (CACC) vehicle would degrade into the Adaptive Cruise Control (ACC) vehicle due to communication failure.

METHOD

First, the different car-following models are used to capture characteristics of different types of vehicles (e.g., HDVs, CACC, and ACC). Second, the stability of mixed traffic flow is analyzed under different penetration rates of CAVs. Then, multiple safety measures, such as standard deviation of vehicle speed (SD), time exposed rear-end crash risk (TER), time exposed time-to-collision (TET), and time-integrated time-to-collision (TIT) are used to evaluate the safety of mixed traffic flow on expressways. Finally, the sensitivity of traffic demand, the threshold of time-to-collision (TTC), and the parameters of car-following models are analyzed based on a numerical simulation.

RESULTS

The results show that the ACC vehicle has no significant impact on the SD of mixed traffic flows, but it leads to the deterioration of TET and TIT, making the reduction proportion of TER slower. When the penetration rate exceeds 50%, the increase of CACC vehicles reduces traffic safety risks significantly. Furthermore, the increase in traffic demand and car-following parameters worsens traffic safety on expressways.

CONCLUSIONS

This paper suggests that the CACC vehicles degenerate into ACC vehicles due to communication failure, and the safety risk of mixed traffic flow increases significantly. Practical Applications: The application of CAVs can improve the stability and safety of traffic flow.

摘要

简介

互联自动驾驶车辆(CAV)技术深度融合了各领域的先进技术,为提高交通安全提供了有效途径。然而,道路上的车辆从有人驾驶车辆(HDV)向 CAV 过渡还需要时间。此外,由于通信故障,协同自适应巡航控制(CACC)车辆会降级为自适应巡航控制(ACC)车辆。

方法

首先,使用不同的跟驰模型来捕捉不同类型车辆(如 HDV、CACC 和 ACC)的特性。其次,分析不同 CAV 渗透率下混合交通流的稳定性。然后,使用多个安全措施,如车辆速度标准差(SD)、追尾碰撞风险暴露时间(TER)、碰撞时间暴露时间(TET)和碰撞时间积分(TIT),评估高速公路混合交通流的安全性。最后,基于数值模拟分析交通需求的敏感性、碰撞时间(TTC)的阈值以及跟驰模型的参数。

结果

结果表明,ACC 车辆对混合交通流的 SD 没有显著影响,但会导致 TET 和 TIT 的恶化,使 TER 的减少比例变慢。当渗透率超过 50%时,CACC 车辆的增加会显著降低交通安全风险。此外,交通需求和跟驰参数的增加会使高速公路上的交通安全性恶化。

结论

本文认为,由于通信故障,CACC 车辆会降级为 ACC 车辆,混合交通流的安全风险会显著增加。

实际应用

CAV 的应用可以提高交通流的稳定性和安全性。

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