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A New Network Topology Evolution Generator Based on Traffic Increase and Distribution Model

机译:基于流量增加和分布模型的新网络拓扑演化发生器

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Following traffic increase near to network backbone capacity in a domain network, the evolution of backbone topology takes place. In this paper, three main types of evolution methods: link upgrading only method (upgrade link capacity only), node upgrading method (add nodes and links with the same link capacity), and the combinations of previous two are explored. To shunt the saturated traffic efficiently, we propose several node upgrading generators -Adapting Traffic Evolution Topology gEnerators (ATETEs). ATETEs consider traffic distribution and node burden conditions and select the congested link as the main shunting object. The difference among ATETEs lies that they have diverse strategies to choose a node in the congested link as the second shunting aim. Simulation shows that: the type of ATETEs which picks the burdened node in the saturated link as another shunting object has the most effective shunting result. Compare with most of current topology generators such as [BRITE] in [1] which consider little about traffic increase distribution, ATETEs are more efficient to satisfy traffic increase.
机译:在域网络中靠近网络骨干容量的流量增加,骨干拓扑的演变发生。在本文中,三种主要类型的演化方法:Link升级方法(仅限升级链路容量),节点升级方法(添加具有相同链路容量的节点和链接),并探讨了前两个的组合。要有效地分流饱和的流量,我们提出了几个节点升级生成器 - 划分流量演进拓扑生成器(atetes)。 atetes考虑流量分布和节点负担条件,并选择拥挤的链接作为主要的旋转对象。 atetes之间的差异在于,他们具有各种策略,可以选择拥挤链接中的节点作为第二旋转目标。仿真显示:作为另一个分流对象中拾取饱和链接中的负载节点的atETE的类型具有最有效的分流结果。与大多数当前拓扑发生器(如[Brite])中的大多数[1]相比,这考虑到交通增加分布很少,ateTes更有效地满足流量增加。

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