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首页> 外文期刊>Physica, A. Statistical mechanics and its applications >Evolutionary construction of geographical networks with nearly optimal robustness and efficient routing properties
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Evolutionary construction of geographical networks with nearly optimal robustness and efficient routing properties

机译:具有近乎最佳的鲁棒性和有效的路由属性的地理网络的演化构造

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Robust and efficient design of networks on a realistic geographical space is one of the important issues for the realization of dependable Communication systems. In this paper, based on a percolation theory and a geometric graph property, we investigate such a design from the following viewpoints: (1) network evolution according to a spatially heterogeneous population, (2) trimodal low degrees for the tolerant connectivity against both failures and attacks, and (3) decentralized routing within short paths. Furthermore,we point out the weakened tolerance by geographical constraints on local cycles, and propose a practical strategy by adding a small fraction of shortcut links between randomly chosen nodes in order to improve the robustness to a similar level to that of the optimal bimodal networks with a larger degree O(root N) for the network size N. These properties will be useful for constructing future ad hoc networks in wide-area communications.
机译:在现实的地理空间上进行鲁棒高效的网络设计是实现可靠的通信系统的重要问题之一。在本文中,基于渗流理论和几何图属性,我们从以下角度研究了这种设计:(1)根据空间异构种群的网络演化;(2)三峰低度用于容忍对两种故障的连通性和攻击,以及(3)短路径内的分散式路由。此外,我们指出了局部循环受地理约束的削弱,并提出了一种可行的策略,即在随机选择的节点之间添加一小部分捷径链接,以将鲁棒性提高到与最优双峰网络相似的水平。对于网络大小N,更大的度数O(根N)。这些属性对于在广域通信中构建将来的自组织网络很有用。

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