通过风险评估提高非受控三足交叉口的安全性

IF 2.3 4区 工程技术 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC
Khushbu Bhatt, Jiten Shah, Margaret C. Bell, Dilum Dissanayake
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引用次数: 0

摘要

可接受的间隔——司机认为足够进入或穿过十字路口的时间或距离——是交通风险的关键指标,尤其是在不受控制的三条腿交叉路口。较小的可接受间隙与较高的风险相关,因为车辆冲突的可能性增加。本研究探讨了可接受差距与风险之间的关系,并提出了一种量化风险和严重程度(LORS)的方法,以指导有针对性的安全干预。车辆速度、可接受间隙和临界间隙的数据从印度的六个农村十字路口收集。利用二元logit回归模型和聚类技术,LORS根据实际事故数据进行了估计和验证,预测准确率高达83%。这项研究的意义在于其新颖的数据驱动的安全评估方法,使用易于在现场测量的参数。该方法针对不同的交通状况而设计,为交通工程师和规划者提供了一个实用的工具来评估十字路口的安全性,建议具体的补救措施,并根据风险和严重程度优先考虑干预措施。该研究具有自动化和可扩展性的潜力,有助于开发更安全的道路系统,特别是在传统碰撞数据有限或不可用的低资源环境中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Enhancing Intersection Safety at Uncontrolled Three-Legged Intersections Through Assessment of Risk

Enhancing Intersection Safety at Uncontrolled Three-Legged Intersections Through Assessment of Risk

The accepted gap—the time or distance a driver deems sufficient to enter or cross an intersection—is a key indicator of traffic risk, particularly at uncontrolled three-legged intersections. Smaller accepted gaps are linked to higher risk due to an increased chance of vehicle conflicts. This study investigates the relationship between accepted gaps and risk and proposes a method to quantify the level of risk and severity (LORS) to guide targeted safety interventions. Data on vehicle speed, accepted gap and critical gap were collected from six rural intersections in India. Using a binary logit regression model and clustering techniques, the LORS was estimated and validated against actual accident data, yielding a predictive accuracy of up to 83%.

The significance of this study lies in its novel data-driven approach to safety assessment using parameters easily measured in the field. Designed for heterogeneous traffic conditions, the method provides traffic engineers and planners with a practical tool to assess intersection safety, recommend specific remedial measures and prioritise interventions based on risk and severity levels. With potential for automation and scalability, this research contributes to the development of safer road systems, particularly in low-resource settings where conventional crash data is limited or unavailable.

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来源期刊
IET Intelligent Transport Systems
IET Intelligent Transport Systems 工程技术-运输科技
CiteScore
6.50
自引率
7.40%
发文量
159
审稿时长
3 months
期刊介绍: IET Intelligent Transport Systems is an interdisciplinary journal devoted to research into the practical applications of ITS and infrastructures. The scope of the journal includes the following: Sustainable traffic solutions Deployments with enabling technologies Pervasive monitoring Applications; demonstrations and evaluation Economic and behavioural analyses of ITS services and scenario Data Integration and analytics Information collection and processing; image processing applications in ITS ITS aspects of electric vehicles Autonomous vehicles; connected vehicle systems; In-vehicle ITS, safety and vulnerable road user aspects Mobility as a service systems Traffic management and control Public transport systems technologies Fleet and public transport logistics Emergency and incident management Demand management and electronic payment systems Traffic related air pollution management Policy and institutional issues Interoperability, standards and architectures Funding scenarios Enforcement Human machine interaction Education, training and outreach Current Special Issue Call for papers: Intelligent Transportation Systems in Smart Cities for Sustainable Environment - https://digital-library.theiet.org/files/IET_ITS_CFP_ITSSCSE.pdf Sustainably Intelligent Mobility (SIM) - https://digital-library.theiet.org/files/IET_ITS_CFP_SIM.pdf Traffic Theory and Modelling in the Era of Artificial Intelligence and Big Data (in collaboration with World Congress for Transport Research, WCTR 2019) - https://digital-library.theiet.org/files/IET_ITS_CFP_WCTR.pdf
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