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Improving Safety and Mobility at High-Speed Intersections with Innovations in Sensor Technology

机译:通过传感器技术的创新,提高高速交叉口的安全性和移动性

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摘要

A series of innovations has been made in the vehicle sensors field. Technologies such as IntelliDrive and radar-based smart sensors make it pos­sible to track each vehicle in proximity to an intersection. However, current technologies have limitations, such as lack of robustness, accuracy, or level of penetration. This paper assumes an accurate wide-area detector (WAD), which might be soon available, and highlights the potential benefits that might be derived in safety and efficiency of oper­ations at high-speed intersections from the deployment of the WAD. Two critical areas in which wide-area detection can lead to significant improvements are discussed: (a) location of crash risk on onset of yellow and (b) location of vehicles on onset of yellow. A case study was conducted at an instrumented intersection in Noblesville, Indiana, to esti­mate potential improvement from the use of an ideally operating WAD and green extension logic for signal control. Findings revealed that the replacement of the single loop detector sensor with a WAD sensor would lead to an additional 1.4 vehicles being served per lane on the cross street per unit vehicle provided with dilemma zone protection on the high ­speed approach. Results also showed that speed traps should be used only after accounting for the trade-off between safety and efficiency and the traffic control logic. When speed traps were designed with generic dilemma zone boundaries at the Noblesville site, the dilemma zone protection was provided only 57% of the time because vehicles accelerated or decelerated after passing the speed trap.
机译:在车辆传感器领域已经进行了一系列创新。诸如IntelliDrive和基于雷达的智能传感器之类的技术使跟踪交叉路口附近的每辆车成为可能。但是,当前的技术存在局限性,例如缺乏鲁棒性,准确性或渗透水平。本文假设一个准确的广域检测器(WAD)可能很快就会面世,并强调了WAD的部署可能会带来高速路口的安全性和运营效率带来的潜在好处。讨论了可在其中进行大范围检测的两个关键领域:(a)黄色发车时的碰撞风险位置和(b)黄色发车时的车辆位置。在印第安纳州Noblesville的一个仪器交叉路口进行了案例研究,以评估使用理想操作的WAD和绿色扩展逻辑进行信号控制的潜力。调查结果表明,用WAD传感器替换单回路检测器传感器将导致每辆单位车辆在十字路口每条车道上再服务1.4辆车辆,并在高速进场中提供两难区保护。结果还表明,只有在考虑了安全性和效率与交通控制逻辑之间的权衡之后,才应使用速度陷阱。当在Noblesville站点设计具有通用两难区边界的速度陷阱时,仅在57%的时间内提供了两难区保护,因为车辆在通过速度陷阱后会加速或减速。

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