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首页> 外文期刊>KSCE journal of civil engineering >Analysis of Performance of Transitional Preemption Strategy for Traffic Signal Near At-Grade Railway Grade Crossing
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Analysis of Performance of Transitional Preemption Strategy for Traffic Signal Near At-Grade Railway Grade Crossing

机译:铁路平交道口附近交通信号过渡抢占策略性能分析

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摘要

Because the prime objective of current preemption methods at signalized intersections near highway-railroad grade crossings is to clear the crossing, secondary objectives such as safe pedestrian crossing and vehicle delay are given less consideration or are ignored completely during the preemption. Under certain circumstances state-of-the-practice traffic signal preemption strategies may cause serious pedestrian safety and efficiency problems at signalized intersections near highway-railroad grade crossings. Recently, an Improved Transition Preemption Strategy (ITPS) that is specifically designed to improve intersection performance and pedestrian safety was developed by Cho and Rilett. Even if the ITPS algorithm improved both the safety and efficiency of signalized intersections near highway-railroad grade crossings, it is impossible to measure the exact benefit of ITPS because the ITPS algorithm was tested only for the worst case scenario at the development stage. For this paper, the ITPS algorithm was tested under normal operating condition, that is, trains were designed to arrive at the crossing randomly during the cycle. Also, the effect of pedestrians was analyzed using a VISSIM simulation model which was calibrated to field conditions. Finally, a benefit/cost analysis was performed. It was concluded that the ITPS algorithm improves both the safety and efficiency of signalized intersections near highway-railroad grade crossings for normal operating condition.
机译:由于当前抢占方法的主要目标是在高速公路-铁路平交道口附近的信号交叉口进行通行,因此在抢占过程中,次要目标(例如安全行人过路处和车辆延误)没有得到充分考虑或被完全忽略。在某些情况下,在高速公路-铁路平交道口附近的信号交叉口处,现行的交通信号抢先策略可能会导致严重的行人安全和效率问题。最近,Cho and Rilett开发了一种专门设计用于改善交叉路口性能和行人安全的改进型过渡优先策略(ITPS)。即使ITPS算法提高了高速公路-铁路平交道口附近信号交叉口的安全性和效率,也无法衡量ITPS的确切收益,因为ITPS算法仅在开发阶段针对最坏的情况进行了测试。在本文中,ITPS算法在正常运行条件下进行了测试,也就是说,火车被设计为在周期内随机到达交叉口。此外,使用VISSIM仿真模型分析了行人的影响,该模型已根据现场条件进行了校准。最后,进行了收益/成本分析。结论是,ITPS算法在正常运行条件下提高了高速公路-铁路平交道口附近信号交叉口的安全性和效率。

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