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Reducing the power consumption of hose-model networks with bundled links

机译:通过捆绑链路减少软管模型网络的功耗

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Given the exponential growth in telecommunication networks, more and more attention is being paid to their share in the global energy consumption. Reducing networks’ power consumption has become a major concern. However, the often over-provisioned wired core network is still overlooked. In core networks, pairs of routers are typically connected by multiple physical cables that form one logical bundled link participating in the intra-domain routing protocol. To reduce the energy consumption of core networks with bundled cables, the authors propose a scheme to deactivate the maximum possible number of cables, and associated equipment, while considering hose-model traffic. A similar approach has been presented for the pipe model, where the exact traffic matrix is assumed to be known. Owing to traffic uncertainty, however, it is difficult for network operators to have exact knowledge of the traffic matrix. This traffic uncertainty can be avoided by using the hose model, which specifies only the upper bounds of the egress/ingress traffic from/to a node. They introduce a mixed integer linear problem formulation that yields the optimal solution and a more practical and near optimal heuristic algorithm for large networks. The author's performance evaluation results show that it offers up to 50% power reduction.
机译:鉴于电信网络的指数级增长,人们越来越关注它们在全球能源消耗中所占的份额。降低网络功耗已成为主要问题。然而,经常被过度配置的有线核心网络仍然被忽视。在核心网络中,成对的路由器通常通过多条物理电缆连接,这些物理电缆形成一个参与域内路由协议的逻辑捆绑链路。为了减少捆绑电缆的核心网络的能耗,作者提出了一种方案,在考虑软管模型流量的同时,停用最大数量的电缆和相关设备。对于管道模型,已经提出了一种类似的方法,其中假定已知确切的流量矩阵。但是,由于业务量的不确定性,网络运营商很难完全了解业务量矩阵。使用软管模型可以避免这种流量不确定性,该模型仅指定从/到节点的出口/入口流量的上限。他们介绍了一种混合整数线性问题公式,该公式可为大型网络提供最佳解决方案以及更实用和接近最佳的启发式算法。作者的性能评估结果表明,它最多可降低50%的功耗。

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