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Power shifting in Thrifty Interconnection Network

机译:节俭互连网络中的功率转移

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This paper presents two complementary techniques to manage the power consumption of large-scale systems with a packet-switched interconnection network. First, we propose Thrifty Interconnection Network (TIN), where the network links are activated and de-activated dynamically with little or no overhead by using inherent system events to timely trigger link activation or de-activation. Second, we propose Network Power Shifting (NPS) that dynamically shifts the power budget between the compute nodes and their corresponding network components. TIN activates and trains the links in the interconnection network, just-in-time before the network communication is about to happen, and thriftily puts them into a low-power mode when communication is finished, hence reducing unnecessary network power consumption. Furthermore, the compute nodes can absorb the extra power budget shifted from its attached network components and increase their processor frequency for higher performance with NPS. Our simulation results on a set of real-world workload traces show that TIN can achieve on average 60% network power reduction, with the support of only one low-power mode. When NPS is enabled, the two together can achieve 12% application performance improvement and 13% overall system energy reduction. Further performance improvement is possible if the compute nodes can speed up more and fully utilize the extra power budget reinvested from the thrifty network with more aggressive cooling support.
机译:本文提出了两种补充技术,以使用分组交换互连网络来管理大型系统的功耗。首先,我们提出了节俭互连网络(TIN),在该网络中,通过使用固有的系统事件及时触发链路激活或停用,可以以很少或没有开销的方式动态激活和禁用网络链路。其次,我们提出了网络功率转换(NPS),该功能可在计算节点及其相应的网络组件之间动态转换功率预算。 TIN在即将进行网络通信之前及时激活并训练互连网络中的链路,并在通信结束时将它们节俭地设置为低功率模式,从而减少了不必要的网络功耗。此外,计算节点可以吸收从其连接的网络组件转移过来的额外功率预算,并增加其处理器频率,从而通过NPS获得更高的性能。我们在一组实际工作负载轨迹上的仿真结果表明,在仅支持一种低功耗模式的情况下,TIN可以平均降低60%的网络功耗。启用NPS后,两者可以共同提高12%的应用程序性能和13%的整体系统能耗。如果计算节点可以加快速度并充分利用节俭网络再投资的额外功率预算,并提供更积极的散热支持,则可能会进一步提高性能。

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