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Performance Evaluation of Transit Signal Priority Strategies for BRT in Taichung: A Simulation Approach

机译:台中BRT交通信号优先策略的性能评估:一种仿真方法

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In order to improve the service quality and traffic efficiency of bus rapid transit (BRT), transit signal priority (TSP) used in the adaptive traffic signal control system has been viewed as important opportunities for reducing overall traffic congestions and improving bus transit services. The first BRT line in Taichung, Tai wan is operating in July 2014, while fixed-time signal timings are used at all signalized intersections. According to the detection technology presently used in Taichung, a cross-way considered TSP method (CCTSP) is designed. The CCTSP, including vehicle detection, time prediction and strategy decision, aims at reallocating green times among the phases with considering the real-time traffic flow condition and the bus priority request. VAP, vehicle actuated programming, is a sub-module of micro simulation platform Vissim. The VAP based simulation platform is developed to evaluate TSPs in details. Testbed of the BRT line Network in Taichung-Port Road is established in VISSIM according to the collected BRT planning data in Taichung. Extensive VISSIM simulation results have demonstrated the potential of the developed CCTSP in balancing the BRT requests and overall traffic efficiency, and indicated that the signal priorities derived from CCTSP has better performance.
机译:为了提高公交快速公交(BRT)的服务质量和交通效率,自适应交通信号控制系统中使用的公交信号优先级(TSP)被视为减少总体交通拥堵和改善公交交通服务的重要机会。台湾台中的第一条BRT线于2014年7月投入运营,而所有信号交叉口均使用固定时间的信号定时。根据台中市目前使用的检测技术,设计了一种考虑TSP方法的交叉检测方法。 CCTSP包括车辆检测,时间预测和策略决策,旨在通过考虑实时交通流状况和公交车优先请求,在各阶段之间重新分配绿色时间。 VAP是车辆驱动的编程,是微仿真平台Vissim的子模块。开发了基于VAP的仿真平台来详细评估TSP。根据收集的台中BRT规划数据,在VISSIM中建立了台中港路BRT线网络的测试平台。大量的VISSIM仿真结果证明了开发的CCTSP在平衡BRT请求和总体流量效率方面的潜力,并表明从CCTSP派生的信号优先级具有更好的性能。

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