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Minimization of Network Power Consumption with Redundancy Elimination

机译:冗余消除最小化网络功耗

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Recently, energy-aware routing has gained increasing popularity in the networking research community. The idea is that traffic demands are aggregated over a subset of the network links, allowing other links to be turned off to save energy. In this paper, we propose GreenRE -a new energy-aware routing model with the support of the new technique of data redundancy elimination (RE). This technique, enabled within the routers, can identify and remove repeated content from network transfers. Hence, capacity of network links are virtually increased and more traffic demands can be aggregated. Based on our real experiments on Orange Labs platform, we show that performing RE consumes some energy. Thus, while preserving connectivity and QoS, it is important to identify at which routers to enable RE and which links to turn off so that the power consumption of the network is minimized. We model the problem as an Integer Linear Program and propose a greedy heuristic algorithm. Simulations on several network topologies show that GreenRE can gain further 30% of energy savings in comparison with the traditional energy-aware routing model.
机译:最近,能量感知路由在网络研究界中获得了越来越受欢迎。该想法是在网络链路的子集中聚合交通需求,允许关闭其他链接以节省能量。在本文中,我们提出了Greenre -A新的能量感知路由模型,支持新的数据冗余消除技术(RE)。在路由器中启用此技术可以从网络传输中识别和删除重复内容。因此,网络链路的容量几乎增加,可以聚合更多的流量需求。基于我们对橙色实验室平台的真实实验,我们表明表演重复消耗了一些能量。因此,在保留连接和QoS的同时,重要的是要识别哪些路由器能够启用RE以及哪个链接以关闭,以便最小化网络的功耗。我们将问题建模为整数线性程序,并提出了一种贪婪的启发式算法。关于多个网络拓扑的模拟表明,与传统的能量感知路由模型相比,格林可以节省的高度节省。

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