首页> 外文会议>International conference of Chinese transportation professionals;ICCTP 2011 >Modeling the Bicycle Passing Events on Physically Separated Bicycle Roadway Using Cellular Automaton
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Modeling the Bicycle Passing Events on Physically Separated Bicycle Roadway Using Cellular Automaton

机译:使用元胞自动机对物理分离的自行车道上的自行车通过事件进行建模

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The number of bicycle passing events was proposed as a good indicator to evaluate the level of service of bicycle roadways. However, modeling methods that can be used for quantitatively calculating the number of passing events were quite few. The primary objective of this study is to develop a Cellular Automaton (CA) model firstly used for modeling the bicycle passing events and validate the calculation accuracy of the proposed model. Bicycle operating and overtaking rules were developed in the CA model. Field data of passing events were collected on four physically separated bicycle roadways in Nanjing city. The collected data were compared with the prediction results of CA model. It is found that the CA model provides a reasonable accuracy in predicting the number of bicycle passing events. Time-space diagrams analysis shows that bicycle flow is congested and the overall mean speed decreases under high density traffic condition.
机译:建议将自行车通过事件的数量作为评估自行车道路服务水平的良好指标。但是,可用于定量计算通过事件数量的建模方法很少。这项研究的主要目的是建立一个细胞自动机(CA)模型,该模型首先用于对自行车通过事件进行建模,并验证所提出模型的计算准确性。在CA模型中制定了自行车操作和超车规则。通过事件的现场数据是在南京市四个分开的自行车道上收集的。将收集的数据与CA模型的预测结果进行比较。发现CA模型在预测自行车通过事件的数量方面提供了合理的准确性。时空图分析表明,在高密度交通条件下,自行车流量拥塞,整体平均速度降低。

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