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Minimizing energy for wireless web access with bounded slowdown

机译:通过有限的速度将无线网络访问的能量降至最低

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On many battery-powered mobile computing devices, the wireless network is a significant contributor to the total energy consumption. In this paper, we investigate the interaction between energy-saving protocols and TCP performance for Web like transfers. We show that the popular IEEE 802.11 power-saving mode (PSM), a "static" protocol, can harm performance by increasing fast round trip times (RTTs) to 100 ms; and that under typical Web browsing workloads, current implementations will unnecessarily spend energy waking up during long idle periods.To overcome these problems, we present the Bounded-Slowdown (BSD) protocol, a PSM that dynamically adapts to network activity. BSD is an optimal solution to the problem of minimizing energy consumption while guaranteeing that a connection's RTT does not increase by more than a factor p over its base RTT, where p is a protocol parameter that exposes the trade-off between minimizing energy and reducing latency. works by staying awake for a short periodof time after the link idle. We present several trace-driven simulation results that show that, compared to a static PSM, the Bounded Slowdown protocol reduces average Web page retrieval times by 5--64%, while simultaneously reducing energy consumption by 1--14% (and by 13X compared to no power management).
机译:在许多电池供电的移动计算设备上,无线网络是总能耗的重要来源。在本文中,我们研究了节能协议和类似Web的传输的TCP性能之间的交互作用。我们证明,流行的IEEE 802.11省电模式(PSM)是一种“静态”协议,它可以通过将快速往返时间(RTT)增加到100 ms来损害性能。并且在典型的Web浏览工作负载下,当前的实现将不必要地花费很长时间在空闲时间里唤醒。为克服这些问题,我们提出了 Bounded-Slowdown(BSD)协议,它是一种动态适应的PSM网络活动。 BSD是最小化能耗问题的最佳解决方案,同时确保连接的RTT不会比其基本RTT增加超过p倍,其中p是一个协议参数,揭示了在最小化能耗和减少延迟之间进行权衡的问题。通过在链接空闲后短时间内保持清醒来工作。我们提供了一些跟踪驱动的仿真结果,这些结果表明,与静态PSM相比,Bounded Slowdown协议将平均网页检索时间减少了5--64%,而同时同时将能耗降低了1- -14%(与没有电源管理相比,提高了13倍)。

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