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Urban Traffic Complex Network Hub Node Analysis and Signal Control Optimization Strategy Research

机译:城市交通综合网络集线器节点分析与信号控制优化策略研究

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It is very important to select hub nodes or key junctions before urban traffic signal control system (SCOOT or SCATS) divides control sub-areas. Usually, traffic flow and link numbers are used as indexes to find out which hub nodes are in urban traffic network. However, these indexes could not reflect the traffic network topology characteristics like free scale features which are very helpful to protect the effectiveness of regional traffic signal control system under 'intentional attack' of traffic incidents. In this paper, new method of node importance analysis, hub node selection and application of urban traffic complex network is discussed. Firstly, urban traffic network is abstracted as weighted complex traffic network using junction as node and travel expense (travel time) as link weight. Secondly, using network cohesion as index, weighted node contraction method is applied to evaluate the importance of node and effective results are shown applying it on simulation network. Finally, based on hub node selection, SCATS system optimization strategies are also illustrated.
机译:在城市交通信号控制系统(SCOOD或SCATS)划分控制子区域之前,选择集线器节点或关键连接非常重要。通常,流量流和链接号码用作索引,以找出城市交通网络中的哪些集线器节点。然而,这些索引无法反映交通网络拓扑特征,如自由尺度特征,这非常有助于保护区域交通信号控制系统的有效性在交通事故的“故意攻击”下。本文讨论了新的节点重要性分析方法,集线器节点选择和城市流量复杂网络的应用。首先,城市交通网络用作为节点和旅行费用(旅行时间)作为链接重量,将城市交通网络抽象为加权复杂的交通网络。其次,使用网络粘合为索引,应用加权节点收缩方法来评估节点的重要性,并在仿真网络上显示有效的结果。最后,基于集线器节点选择,还示出了SCATS系统优化策略。

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