Actuated Signal Timing Optimization for a No-Notice Evacuation with High Left-Turn Demands

Md Toushik Ahmed Niloy, Ryan N. Fries
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Abstract

The determination of the appropriate traffic signal timing plans for no-notice evacuations in densely populated areas is a noteworthy challenge. The objective of this study was to evaluate alternatives that could optimize evacuee traffic flow in a no-notice evacuation of areas near an oil refinery. This simulation case study focused on a residential area in the City of Wood River, Illinois, and used Synchro 8.0 and VISSIM 7.0. This case study was different from existing evacuation literature because of the high left-turn demand from evacuating traffic. The study methods were unique because of the application of dynamic traffic assignment, a left-turn movement on the evacuation route, and the simulation of fully-actuated traffic signals. These scenarios evaluated the following: (1) existing traffic infrastructure; (2) flexible shelter choice; and (3) optimized traffic signal timing with flexible shelter choice. The results suggested that optimizing the signal timing and allowing drivers’ flexibility in choosing evacuation routes achieved the fastest evacuation. These findings indicated that a longer cycle length and an extended left-turn phase were important factors in reducing traffic delay in the network. Overall, these findings underscore the importance of operating intersections efficiently during no-notice evacuations.
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针对高左转需求的无通知疏散进行驱动信号配时优化
在人口稠密地区进行无通知疏散时,如何确定合适的交通信号配时方案是一项值得注意的挑战。本研究的目的是评估在炼油厂附近地区进行无通知疏散时,可优化疏散人员交通流量的替代方案。本模拟案例研究侧重于伊利诺伊州伍德河市的一个居民区,并使用了 Synchro 8.0 和 VISSIM 7.0。该案例研究不同于现有的疏散文献,因为疏散交通的左转需求量很大。研究方法的独特之处在于应用了动态交通分配、疏散路线上的左转运动以及全自动交通信号模拟。这些方案对以下方面进行了评估:(1) 现有交通基础设施;(2) 灵活的避难所选择;(3) 具有灵活避难所选择的优化交通信号配时。结果表明,优化信号配时并允许驾驶员灵活选择疏散路线可实现最快疏散。这些结果表明,较长的周期长度和延长的左转阶段是减少交通网络中交通延误的重要因素。总之,这些研究结果强调了在无通知疏散期间有效运行交叉口的重要性。
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