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Dynamic Frequency Scaling for Energy Consumption Reduction in Synchronous Distributed Applications

机译:动态频率缩放以减少同步分布式应用中的能耗

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Dynamic Voltage Frequency Scaling (DVFS) can be applied to modern CPUs. This technique is usually used to reduce the energy consumed by a CPU while computing. Thus, decreasing the frequency reduces the power consumed by the CPU. However, it can also significantly affect the performance of the executed program if it is compute bound and if a low CPU frequency is selected. Therefore, the chosen scaling factor must give the best possible trade-off between energy reduction and performance. In this paper we present an algorithm that predicts the energy consumed with each frequency gear and selects the one that gives the best ratio between energy consumption reduction and performance. This algorithm works online without training or profiling and has a very small overhead. It also takes into account synchronous communications between the nodes that are executing the distributed algorithm. The algorithm has been evaluated over the SimGrid simulator while being applied to the NAS parallel benchmark programs. The results of the experiments show that it outperforms other existing scaling factor selection algorithms.
机译:动态电压频率缩放(DVFS)可以应用于现代CPU。此技术通常用于减少CPU在计算时消耗的能量。因此,降低频率可减少CPU消耗的功率。但是,如果它是受计算限制的并且选择了较低的CPU频率,它也会严重影响已执行程序的性能。因此,选择的比例因子必须在节能和性能之间达到最佳平衡。在本文中,我们提出了一种算法,该算法可预测每个频率齿轮消耗的能量,并选择在能耗降低和性能之间达到最佳比例的算法。该算法无需训练或分析就可以在线运行,并且开销很小。它还考虑了执行分布式算法的节点之间的同步通信。该算法已在SimGrid模拟器上进行了评估,同时已应用于NAS并行基准测试程序。实验结果表明,该算法优于其他现有的比例因子选择算法。

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