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Synchronisation between two different networks with multi-weights and its application in public traffic network

机译:具有多重网络与公共交通网络中的两个不同网络之间的同步

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The paper established a conventional bus traffic network and a subway network by using the method of space R based on the existing public traffic network model. Regarding these two networks as the sub-networks, this paper presented a new two-layer-coupled public traffic network with multi-weights through the transfer relationship between conventional bus lines and subway lines. Every edge of this model's two sub-networks has one or several different property weights, and the coupling edges between two sub-networks have one weight. Based on the method of network split, the paper splits the complex networks with multi-weights into several different single-weighted two-layer-coupled public traffic networks and then investigates its global synchronisation. Finally, according to the synchronisation theory of coupling networks with multi-weights and taking 'Lorenz system' as the network node, some numerical examples are given to show the impact of congestion degree, passenger-flow density, transfer degree and capacity matching degree to the two-layer-coupled public traffic network balance.
机译:本文通过使用基于现有的公共交通网络模型的空间R方法建立了传统的总线交通网络和地铁网络。关于这两个网络作为子网,本文通过传统总线和地铁线之间的传输关系介绍了一种具有多重权重的新的双层耦合的公共交通网络。该模型的两个子网的每个边缘都有一个或多个不同的属性权重,并且两个子网之间的耦合边缘具有一个重量。基于网络拆分方法,该纸张将复杂网络与多重重量分成几种不同的单加权两层耦合的公共业务网络,然后调查其全局同步。最后,根据具有多重权重的耦合网络的同步理论并将“Lorenz系统”作为网络节点,给出了一些数值示例,以显示拥塞程度,乘客流密度,转移度和容量匹配程度的影响双层耦合的公共交通网络平衡。

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