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Overcoming the energy versus delay trade-off in cloud network reconfiguration

机译:克服能量与延迟权衡的云网络重新配置

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Cloud computing calls for efficient solutions to manage the energy consumption of the transport, process and storage services. Recently, we have shown that energy savings in the cloud network and the data centers are at the expense of increased delay; hence degraded service quality. In this paper we propose a new scheme, Delay and Power Minimized Provisioning (DePoMiP) to address energy versus delay tradeoff in the cloud network. DePoMiP reconfigures the cloud network and provisions the demands by jointly minimizing the energy consumption and propagation delay. Through simulations, we compare DePoMiP to our previously proposed heuristics for delay-minimized provisioning and power-minimized provisioning of the demands. Simulation results show that DePoMiP mimics power-minimized provisioning in terms of power consumption while it provisions the demands with a few microseconds higher propagation delay when compared to delay-minimized provisioning. Furthermore, its low channel utilization in the IP over WDM transport network, as well as its fairness among the nodes in terms of power consumption, makes DePoMiP a promising solution for the problem of energy-efficient reconfiguration of the cloud network.
机译:云计算需要高效的解决方案来管理传输,流程和存储服务的能耗。最近,我们表明,云网络和数据中心的节能以增加延迟为代价;因此降低了服务质量。在本文中,我们提出了一种新的方案,即延迟和功耗最小配置(DePoMiP),以解决云网络中的能耗与延迟权衡问题。 DePoMiP通过共同最小化能耗和传播延迟来重新配置云网络并满足需求。通过仿真,我们将DePoMiP与我们先前提出的启发式方法进行了比较,以实现需求的延迟最小化和功耗最小化。仿真结果表明,DePoMiP在功耗方面模仿了功耗最小的预配置,而与延迟最小的预配置相比,它以更高的传输延迟几微秒来预配置需求。此外,DePoMiP在WDM传输IP上的IP中的低信道利用率以及节点之间在功耗方面的公平性,使DePoMiP成为解决云网络的节能重组问题的有希望的解决方案。

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