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Transportation dynamics on coupled networks with limited bandwidth

机译:带宽有限的耦合网络的运输动态

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The communication networks in real world often couple with each other to save costs, which results in any network does not have a stand-alone function and efficiency. To investigate this, in this paper we propose a transportation model on two coupled networks with bandwidth sharing. We find that the free-flow state and the congestion state can coexist in the two coupled networks, and the free-flow path and congestion path can coexist in each network. Considering three bandwidth-sharing mechanisms, random, assortative and disassortative couplings, we also find that the transportation capacity of the network only depends on the coupling mechanism, and the fraction of coupled links only affects the performance of the system in the congestion state, such as the traveling time. In addition, with assortative coupling, the transportation capacity of the system will decrease significantly. However, the disassortative coupling has little influence on the transportation capacity of the system, which provides a good strategy to save bandwidth. Furthermore, a theoretical method is developed to obtain the bandwidth usage of each link, based on which we can obtain the congestion transition point exactly.
机译:现实世界中的通信网络往往彼此耦合以节省成本,这导致任何网络都没有独立功能和效率。为了调查这一点,在本文中,我们提出了一个带宽共享的两个耦合网络的运输模型。我们发现自由流状态和拥塞状态可以在两个耦合网络中共存,并且自由流路径和拥塞路径可以在每个网络中共存。考虑到三个带宽共享机制,随机,分类和解剖耦合,我们还发现网络的运输能力仅取决于耦合机构,耦合链路的分数仅影响系统中的系统在拥堵状态下的性能,例如作为旅行时间。此外,通过各种耦合,系统的运输能力将显着降低。然而,解索耦合对系统的运输能力影响不大,这提供了节省带宽的良好策略。此外,基于我们可以获得完全获取拥塞过渡点的每个链路的带宽使用,开发了理论方法以获得每个链路的带宽使用。

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