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Multi-Stage Pedestrian Crossings and Two-Stage Bicycle Turns: Delay Estimation and Signal Timing Techniques for Limiting Pedestrian and Bicycle Delay

机译:多阶段人行横道和两阶段自行车转弯:限制行人和自行车延误的延误估计和信号计时技术

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Signalized intersections sometimes involve multistage pedestrian crossings, in which pedestrians cross to one or more islands and then wait there for a signal to continue. When signals are timed without attention to pedestrian progression, pedestrian delay at multistage crossings can be very long. This paper addresses two issues. First, pedestrian delay at multistage crossings is rarely evaluated because there are no tools in the industry for that purpose except microsimulation. We present a numerical method for determining crossing delay with any number of stages and with the possibility of multiple WALK intervals per cycle. The same method can be applied to single stage crossings, to diagonal two-stage crossings where pedestrians may have path choice, and bicycle two-stage turns. This method has been implemented in a freely available online tool. Second, we describe several signal timing techniques for improving pedestrian and bicyclist progression, and thus reducing their delay, through multistage crossings. They include reservice for selected crossing phases, left turn overlaps, having pedestrian phases overlap each other, and bidirectional bicycle crossings which create path options for two-stage turns. Examples show the potential for large reductions in pedestrian delay, often with little or no increase in vehicular delay. In one example, the addition of a short pedestrian overlap phase reduced average pedestrian delay at a 3-stage crossing by 82 s while average vehicular delay increased by only 0.5 s.
机译:信号交叉路口有时涉及多级人行横道,其中行人横穿一个或多个岛屿,然后在那儿等待信号继续。如果在不注意行人前进的情况下对信号进行定时,则多级交叉口的行人延误可能会很长。本文讨论了两个问题。首先,很少评估多级交叉路口的行人延误,因为工业中除微仿真外没有其他工具可用于此目的。我们提出了一种数值方法,用于确定任何阶段数和每个周期可能存在多个WALK间隔的交叉延迟。可以将相同的方法应用于单级交叉口,对角线两级交叉口(行人可以选择路径)和自行车两级转弯。此方法已在免费的在线工具中实现。其次,我们描述了几种信号计时技术,可通过多级交叉路口改善行人和自行车骑行者的行进速度,从而减少行人和骑行者的延误。它们包括为选定的交叉路口提供服务,左转弯重叠,行人相相互重叠,以及双向自行车交叉路口,可为两步转弯创建路径选项。实例表明,行人延误的潜力有可能大大降低,而行车延误的增加很少或没有。在一个示例中,增加短暂的行人重叠阶段将三级交叉口的平均行人延迟减少了82 s,而平均车辆延迟仅增加了0.5 s。

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