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On Fine-Grained Runtime Power Budgeting for Networks-on-Chip Systems

机译:片上网络系统的细粒度运行时功率预算

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Power budgeting is an essential aspect of networks-on-chip (NoC) to meet the power constraint for on-chip communications while assuring the best possible overall system performance. For simplicity and ease of implementation, existing NoC power budgeting schemes treat all the individual routers uniformly when allocating power to them. However, such homogeneous power budgeting schemes ignore the fact that the workloads of different NoC routers may vary significantly, and thus may provide excess power to routers with low workloads, whereas insufficient power to those with high workloads. In this paper, we formulate the NoC power budgeting problem in order to optimize the network performance over a power budget through per-router frequency scaling. We take into account of heterogeneous workloads across different routers as imposed by variations in traffic. Correspondingly, we propose a fine-grained solution using an agile algorithm with low time complexity. Frequency of each router is set individually according to its contribution to the average network latency while meeting the power budget. Experimental results have confirmed that with fairly low runtime and hardware overhead, the proposed scheme can help save up to percent application execution time when compared with the latest proposed methods.
机译:功率预算是片上网络(NoC)的重要方面,它可以满足片上通信的功率限制,同时确保最佳的整体系统性能。为了简化和易于实现,现有的NoC功率预算方案在为单个路由器分配功率时会统一对待所有单个路由器。但是,这种同类的功率预算方案忽略了以下事实:不同NoC路由器的工作负载可能发生显着变化,因此可能为低工作负载的路由器提供过多的功率,而为高工作负载的路由器提供不足的功率。在本文中,我们制定了NoC功率预算问题,以便通过每个路由器的频率缩放在功率预算上优化网络性能。我们考虑到流量变化带来的跨不同路由器的异构工作负载。相应地,我们提出了一种使用敏捷算法且时间复杂度低的细粒度解决方案。每个路由器的频率根据其对平均网络延迟的贡献进行单独设置,同时满足功耗预算。实验结果证实,与最新提出的方法相比,该方案在运行时和硬件开销较低的情况下,可以帮助节省多达百分之百的应用程序执行时间。

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