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Improving pedestrian facilities at signalised crossings

机译:改善信号交叉口的行人设施

摘要

Traffic signal control systems are usually designed to maximise vehicle capacity and minimise vehicle delay with the needs of pedestrians considered separately as necessary. Therefore, the aim of this research is to improve the signal control at pedestrian crossings, so that optimisation takes into account the total delay to all road users including pedestrians. Upstream Detection and Volumetric Detection at pedestrian crossing facilities have been identified as potential alternatives that might enhance pedestrian amenity. These new possibilities were evaluated using a micro-simulation software. Research to date has shown that the VISSIM model is suitable for this evaluation and the latest algorithm for signal controlled pedestrian crossing, the Puffin has been coded into the model and tested. The Puffin then formed a base control strategy against which new strategies were evaluated. The new strategies were then evaluated based on travel delay to both vehicle and pedestrian and also financial benefit to the road crossing. After calibration and validation in VISSIM model, an Upstream Detection and Volumetric Detection were developed. In the Upstream Detection, a push button was located 5 meters at an upstream location of the crossing. In the Volumetric Detection, the optimum maximum green was determined based on the lowest total person delay and total delay costs. Generally, an Upstream Detection caused a reduction in total person delay and total delay costs at a lower vehicle flow. The Volumetric Detection caused a reduction in total person delay and total delay costs at all vehicle and pedestrian flow combinations. The results showed that both Upstream Detection and Volumetric Detection have promising benefits to implement at Puffin crossing. Upstream Detection has a clear benefit at a lower vehicle flow while the Volumetric Detection shows there are changes on maximum green settings at a lower vehicle flow as pedestrian flow increases.
机译:交通信号控制系统通常被设计为最大化车辆容量并最小化车辆延迟,并根据需要将行人分开考虑。因此,本研究的目的是改善行人过路处的信号控制,以便在优化时考虑到包括行人在内的所有道路使用者的总延迟。在行人过路处的上游检测和容积检测已被确定为可能增强行人便利性的潜在替代方案。使用微仿真软件评估了这些新的可能性。迄今为止的研究表明,VISSIM模型适用于此评估,并且最新的信号控制行人过路算法已将Puffin编码到模型中并进行了测试。海鹦然后形成了基本控制策略,针对该策略评估了新策略。然后根据车辆和行人的出行延误以及道路交叉口的经济利益对新策略进行了评估。在VISSIM模型中进行校准和验证后,开发了上游检测和体积检测。在上游检测中,一个按钮位于十字路口的上游位置5米处。在“容积检测”中,基于最低的总人员延迟和总延迟成本来确定最佳的最大绿色。通常,上游检测可以在较低的车辆流量下减少总人员延迟和总延迟成本。体积检测可减少所有车辆和行人流组合的总人员延误和总延误成本。结果表明,上游检测和体积检测都具有在海雀杂交中实现的有希望的好处。上游检测在车辆流量较低时具有明显的优势,而体积检测显示,随着行人流量的增加,车辆流量较低时最大绿色设置会发生变化。

著录项

  • 作者

    Hassan Sitti Asmah;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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