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Implementing phase rotation in a person-based signal timing optimization framework

机译:在基于人的信号定时优化框架中实现阶段旋转

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Person-based traffic signal timing optimization frameworks have recently been proposed to minimize total passenger delay at intersections. These traffic-responsive frameworks implicitly prioritize transit vehicles over cars due to their higher passenger occupancies while considering conflicts that might exist between transit vehicles arriving from conflicting approaches. However, previous person-based signal timing optimizations consider only fixed phase sequences, which limits their flexibility. This paper extends previously developed algorithms to consider phase rotation in which phase sequences may change within each cycle. The phase rotation is directly incorporated in the mathematical programming framework, but could also be accommodated using an enumeration approach for computational efficiency. The proposed signal timing optimization is tested using numerical simulations of an intersection in State College, PA. The results reveal that phase rotation can reduce overall passenger delay through significantly cutting down bus passenger delay while slightly increasing car passenger delay. However, the performance is sensitive to the assumption made in optimization about phase sequence in future cycles. Assuming a background sequence, rather than an optimized sequence in the current cycle, for future generally results in less frequent phase rotation actions. Such a practice can better maintain a pre-assigned background phase sequence but limits the reduction in passenger delays at the intersection.
机译:最近提出了基于人的流量信号定时优化框架,以最大限度地减少交叉点的总乘客延迟。由于其较高的乘客占用,这些交通响应框架在乘客占用期间隐含地优先考虑运输车辆,同时考虑到从冲突方法到达的过境车辆之间可能存在的冲突。然而,基于人的信号定时优化只考虑了固定的相位序列,这限制了它们的灵活性。本文扩展了先前开发的算法,以考虑相位旋转,其中相位序列可能在每个周期内发生变化。相位旋转直接包含在数学编程框架中,但也可以使用枚举方法来适应计算效率。使用州立学院的交叉口的数值模拟来测试所提出的信号定时优化。结果表明,相位旋转可以通过显着降低公交乘客延迟,同时略微增加汽车客运延迟,可以减少整体乘客延误。然而,性能对未来循环中的相位序列的优化中的假设敏感。假设背景序列,而不是当前周期中的优化序列,未来通常导致较少的相位旋转动作。这样的实践可以更好地维持预先分配的背景相位序列,而是限制交叉点的乘客延迟的减小。

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