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A schedule-based coordinated optimization model for Transit Signal Priority under Connected Vehicle environment

机译:车联网环境下基于时间表的公交信号优先协调优化模型

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Transit as a high efficiency method to solve the congestion problem has been put forward a very long time. Aiming at improving the transit schedule adherence as well as the transit priority efficiency, this paper presents a coordinated optimization model for Transit Signal Priority (TSP) under the environment of Connected Vehicle. The model focuses on the dedicated bus lane, and the control unit is between two successive bus stops, including all the intersections between them. A new sequence of providing priority to intersections between two successive stops has been proposed in order to guarantee the buses' schedule adherence and minimize the adverse impacts on general traffic. Two illustrative examples including time-space diagram based deterministic analysis and two sets of simulation tests have been done to test the proposed model. The proposed model decreased the variance of bus travel time and the delay of the direction of bus travel. Although the delay of other directions increased, the general traffic delay of each intersection remains the same or even lower compared with the original signal timing plan.
机译:作为解决交通拥堵问题的一种高效方法,公交已经提出了很长时间。为了提高公交时刻表的依从性和公交优先权的效率,提出了一种互联车辆环境下公交信号优先(TSP)的协调优化模型。该模型着重于专用公交专用道,控制单元位于两个连续的公交车站之间,包括它们之间的所有交叉点。为了保证公交车时刻表的遵守并最大程度地减少对一般交通的不利影响,已经提出了为两个连续站点之间的交叉路口提供优先服务的新顺序。已经完成了两个说明性示例,包括基于时空图的确定性分析和两组仿真测试,以测试所提出的模型。该模型减少了公交车行驶时间的方差和公交车行驶方向的延迟。尽管其他方向的延迟增加了,但每个交叉路口的总体交通延迟与原始信号时序计划相比保持不变,甚至更低。

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