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Comparison of quasi-regular composite-star and multi-hop structures for core networks

机译:核心网络准规则复合星型和多跳结构的比较

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A novel composite-star architecture, nicknamed the Petaweb, has been recently proposed for high capacity optical core networks. Its topologic structure is such that electronic edge nodes are always connected to each other through a single core switch, and that the core switches are disconnected. The aim is to simplify the traffic engineering and the upgradeability of core networks. In its regular form, this architecture suffers from high fiber cost and low utilization. A recent work tackles the problem of directly designing a quasi-regular composite-star structure, showing that the network cost can get more than halved and that the resources utilization can be significantly improved. In this paper, we compare the quasi-regular composite-star structure to classical irregular multi-hop structures. We show that increasing the weight of a propagation delay virtual cost in the design dimensioning objective function, multi-hop core networks tend to assume a quasi-regular composite-star like topologic structure, with a few core fibers. This suggests that such an architecture is the natural solution whether length-dependent additive costs are considered as part of the design dimensioning objective.
机译:最近已经提出了一种新颖的复合星架构,绰号为Petaweb,用于大容量光核心网络。它的拓扑结构使得电子边缘节点始终通过单个核心交换机相互连接,并且核心交换机断开连接。目的是简化流量工程和核心网络的可升级性。按照常规形式,该架构遭受高光纤成本和低利用率的困扰。最近的工作解决了直接设计准规则的复合星形结构的问题,表明网络成本可以减少一半以上,并且资源利用率可以大大提高。在本文中,我们将准规则的复合星形结构与经典的不规则多跳结构进行了比较。我们表明,在设计尺寸目标函数中增加传播延迟虚拟成本的权重,多跳核心网络倾向于采用准规则的复合星状拓扑结构,并具有少量核心纤维。这表明,无论是否考虑长度相关的附加成本作为设计尺寸目标的一部分,这样的体系结构都是自然的解决方案。

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