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首页> 外文期刊>Traffic Injury Prevention >Reducing the risk of rear-end collisions with infrastructure-to-vehicle (I2V) integration of variable speed limit control and adaptive cruise control system
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Reducing the risk of rear-end collisions with infrastructure-to-vehicle (I2V) integration of variable speed limit control and adaptive cruise control system

机译:通过变速限速控制和自适应巡航控制系统的基础设施到车辆(I2V)集成来减少追尾事故的风险

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Objective: Adaptive cruise control (ACC) has been investigated recently to explore ways to increase traffic capacity, stabilize traffic flow, and improve traffic safety. However, researchers seldom have studied the integration of ACC and roadside control methods such as the variable speed limit (VSL) to improve safety. The primary objective of this study was to develop an infrastructure-to-vehicle (I2V) integrated system that incorporated both ACC and VSL to reduce rear-end collision risks on freeways.Methods: The intelligent driver model was firstly modified to simulate ACC behavior and then the VSL strategy used in this article was introduced. Next, the I2V system was proposed to integrate the 2 advanced techniques, ACC and VSL. Four scenarios of no control, VSL only, ACC only, and the I2V system were tested in simulation experiments. Time exposed time to collision (TET) and time integrated time to collision (TIT), 2 surrogate safety measures derived from time to collision (TTC), were used to evaluate safety issues associated with rear-end collisions. The total travel times of each scenario were also compared.Results: The simulation results indicated that both the VSL-only and ACC-only methods had a positive impact on reducing the TET and TIT values (reduced by 53.0 and 58.6% and 59.0 and 65.3%, respectively). The I2V system combined the advantages of both ACC and VSL to achieve the most safety benefits (reduced by 71.5 and 77.3%, respectively). Sensitivity analysis of the TTC threshold also showed that the I2V system obtained the largest safety benefits with all of the TTC threshold values. The impact of different market penetration rates of ACC vehicles in I2V system indicated that safety benefits increase with an increase in ACC proportions.Conclusions: Compared to VSL-only and ACC-only scenarios, this integrated I2V system is more effective in reducing rear-end collision risks. The findings of this study provide useful information for traffic agencies to implement novel techniques to improve safety on freeways.
机译:目的:最近对自适应巡航控制系统(ACC)进行了研究,以探索增加交通容量,稳定交通流量和提高交通安全性的方法。但是,研究人员很少研究ACC和路边控制方法(如变速限制(VSL))的集成来提高安全性。这项研究的主要目的是开发一种结合了ACC和VSL的基础设施到车辆(I2V)集成系统,以减少高速公路上的追尾事故风险。方法:首先修改了智能驾驶员模型以模拟ACC行为并然后介绍了本文使用的VSL策略。接下来,提出了I2V系统以集成ACC和VSL这两种先进技术。在模拟实验中测试了四种无控制,仅VSL,仅ACC和I2V系统的方案。碰撞时间(TET)和碰撞时间(TIT)是从碰撞时间得出的两种替代安全措施(TTC),用于评估与追尾碰撞有关的安全问题。结果:仿真结果表明,仅使用VSL和仅使用ACC的方法都对降低TET和TIT值有积极的影响(减少了53.0和58.6%以及59.0和65.3 %, 分别)。 I2V系统结合了ACC和VSL的优点,以实现最大的安全性(分别降低了71.5%和77.3%)。对TTC阈值的敏感性分析还表明,在所有TTC阈值下,I2V系统都获得了最大的安全利益。 I2V系统中ACC车辆的不同市场渗透率的影响表明,随着ACC比例的增加,安全性收益也随之增加。碰撞风险。这项研究的结果为交通部门实施新颖的技术以提高高速公路的安全性提供了有用的信息。

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