并行包处理引擎的能量感知负载平衡

R. Bolla, R. Bruschi
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引用次数: 12

摘要

在本文中,我们考虑了能量感知网络设备(例如路由器,交换机等)能够通过低功耗空闲和自适应速率方案来交换其能量消耗以获得数据包转发性能。我们关注最先进的数据包处理引擎,它通常代表网络设备中最耗能的组件,并且通常由许多并行管道组成,以“分而治之”来处理传入的流量负载。我们的目标是控制管道的功率配置,以及管道之间的流量分配方式,以优化能耗和网络性能指标之间的权衡。为此,我们提出并分析了一种约束优化策略,该策略试图在功耗和数据包延迟时间之间找到最佳折衷。为了深入了解此类策略的影响,我们使用来自SW路由器架构和真实流量轨迹的实验数据进行了许多测试。
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Energy-aware load balancing for parallel packet processing engines
In this paper, we consider energy-aware network devices (e.g. routers, switches, etc.) able to trade their energy consumption for packet forwarding performance by means of both low power idle and adaptive rate schemes. We focus on state-of-the-art packet processing engines, which generally represent the most energy-starving components of network devices, and which are often composed of a number of parallel pipelines to “divide and conquer” the incoming traffic load. Our goal is to control both the power configuration of pipelines, and the way to distribute traffic flows among them, in order to optimize the trade-off between energy consumption and network performance indexes. With this aim, we propose and analyze a constrained optimization policy, which try to find the best trade-off between power consumption and packet latency times. In order to deeply understand the impact of such policy, a number of tests have been performed by using experimental data from SW router architectures and real-world traffic traces.
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