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Power-Awareness Extensions for Network Testbeds

机译:网络测试台的电力意识扩展

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The escalation in power consumption of networking and communications equipment is of concern to technologists and environmentalists alike. Understanding how and when networking devices consume power is complicated by their lack of instrumentation. Furthermore, standard networking devices are not typically flexible enough to support experiments with new techniques for reducing power consumption. In this paper, we describe a set of extensions for Linux-based commodity switches that enable a wide range of power-aware experiments in laboratory testbeds. The extensions are based on the requirements for high fidelity in power measurement and in modulation of key subsystems. Our implementation includes two key capabilities: a flexible power consumption model and a traffic shaper that enable emulation of wide range of power-aware hardware and protocols. To validate our power-awareness extension and demonstrate their capabilities and utility, we built a testbed composed of simple, Linux-based switches. First, we show that the most simple configuration of our emulation extensions report power consumption consistent with what can be measured with an external power meter. Next, we conduct a series of experiments on power consumption when bandwidth is scaled directly to performance demands. Our results confirm our hypothesis that a finer grained approach yields more power savings when the transition cost is low and traffic varies.
机译:网络和通信设备的电力消耗升级是关注的技术人员和环保主义者。了解网络设备的消耗功率是缺乏仪器的复杂性。此外,标准网络设备通常不足以支持以用于降低功耗的新技术的实验。在本文中,我们描述了一种基于Linux的商品交换机的一组扩展,使实验室试验台上具有广泛的动力感知实验。扩展基于对功率测量的高保真度以及关键子系统的调制要求。我们的实现包括两个关键功能:灵活的功耗模型和交通整流器,可实现广泛的功率感知硬件和协议。为了验证我们的电力意识扩展并展示其功能和实用程序,我们构建了一个由简单的基于Linux的交换机组成的测试平台。首先,我们表明,我们的仿真扩展最简单的配置报告了与外部功率计可以测量的功耗一致。接下来,当带宽直接缩放到性能需求时,我们开展一系列关于功耗的实验。我们的结果证实了我们的假设,即在过渡成本低,交通变化时,更精细的粒度方法会产生更多的电力。

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