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Coordinated transit signal priority supporting transit progression under Connected Vehicle Technology

机译:互联车辆技术下的协调过境信号优先级支持过境进展

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摘要

In this paper, a person-delay-based optimization method is proposed for an intelligent TSP logic that enables bus/signal cooperation and coordination among consecutive signals under the Connected Vehicle environment. This TSP logic, called TSPCV-C, provides a method to secure the mobility benefit generated by the intelligent TSP logic along a corridor so that the bus delay saved at an upstream intersection is not wasted at downstream intersections. The problem is formulated as a Binary Mixed Integer Linear Program (BMILP) which is solved by standard branch-and-bound method. Minimizing per person delay has been adopted as the criterion for the model. The TSPCV-C is also designed to be conditional. That is, TSP is granted only when the bus is behind schedule and the grant of TSP causes no extra total person delay.
机译:本文针对智能TSP逻辑,提出了一种基于人员延迟的优化方法,该方法能够在互联车辆环境下实现总线/信号之间连续信号之间的协作与协调。这个称为TSPCV-C的TSP逻辑提供了一种方法,可确保智能TSP逻辑沿走廊产生的移动性优势,从而避免在上游交叉路口节省的总线延迟在下游交叉路口浪费。该问题被公式化为二进制混合整数线性程序(BMILP),该程序通过标准分支定界方法解决。该模型的标准是采用每人延迟最小化。 TSPCV-C也被设计为有条件的。也就是说,仅当公交车落后于时间表且TSP的授予不会引起额外的总人员延迟时,才授予TSP。

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