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Signal sub-control-area division of traffic complex network based on nodes importance assessment

机译:基于节点重要性评估的交通复杂网络信号子控制区划分

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Sub-control-area division is an important step in regional traffic signal control system application and generally accomplished by using the distance between different nodes and traffic flow as indexes. It is obviously uncertain and lack of theoretical foundation. Considering the free-scale characteristics of traffic network, in this paper, node degree, node betweeness and high peak hour traffic flow are selected as indexes for traffic node importance assessment firstly. Then C-Means clustering method is applied to hub nodes selection and hub node relative importance used for traffic signal control sub-area division. Moreover, a regional urban network including almost fifty nodes around Chang''an Street in Beijing, China is used as trail area. Data result shows when clustering number is 3 and relative importance index is above 10−1, sub-control-area division of urban traffic weighted complex network is reasonable.
机译:子控制区划分是区域交通信号控制系统应用中的重要一步,通常以不同节点之间的距离和交通流为指标来完成。这显然是不确定的,缺乏理论基础。考虑到交通网络的自由尺度特性,本文首先选择节点度,节点间距离和高峰时段的交通流量作为交通节点重要性评估的指标。然后将C-均值聚类方法应用于交通信号控制子区域划分的集线器节点选择和集线器节点相对重要性。此外,还使用了包括中国北京长安街周围近五十个节点的区域性城市网络作为步道区域。数据结果表明,当聚类数为3且相对重要性指数在10 -1 以上时,城市交通加权复杂网络的子控制区划分是合理的。

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