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A Corridor-Level Evaluation of GPS-Based Transit Signal Priority

机译:基于GPS的公交信号优先权的走廊水平评估

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GPS-based Transit Signal Priority (TSP) has advantages in providing flexible and conditional signal priority to transit vehicles. This study compared the effectiveness of different combinations of operational patterns and TSP strategies and assessed their impacts on side-street traffic operations. Micro-simulation analytical tools were applied to two testbeds of Utah Transit Authority's Bus Route 33 and Bus Rapid Transit (BRT) line 35 MAX. Eight scenarios were created for Route 33 that included the existing conditions and combinations of regular/BRT operational patterns with traditional TSP, GPS-based TSP, Conditional TSP implementations. Three scenarios were created for 35 MAX, also considering the existing traditional TSP condition, GPS-based TSP, and Conditional TSP implementations. Results confirmed similar operational effectiveness of GPS-based TSP when compared to traditional TSP. Conditional TSP had smaller impacts on side-street traffic while providing transit vehicles considerable amounts of delay reduction and travel time saving.
机译:基于GPS的过境信号优先级(TSP)在为过境车辆提供灵活和有条件的信号优先级方面具有优势。这项研究比较了运营模式和TSP策略的不同组合的有效性,并评估了它们对人行横道交通运营的影响。微观仿真分析工具被应用于犹他州交通管理局的33号公交车和35快速公交(BRT)的两个测试台。为Route 33创建了八个方案,其中包括现有条件以及常规/ BRT操作模式与传统TSP,基于GPS的TSP,有条件TSP实施的组合。针对35 MAX创建了三个方案,同时考虑了现有的传统TSP条件,基于GPS的TSP和条件性TSP实现。结果证实,与传统的TSP相比,基于GPS的TSP具有类似的运行效果。有条件的TSP对边路交通的影响较小,同时为过境车辆提供了大量的减少延误和节省旅行时间的功能。

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