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Hierarchical Adaptive Dynamic Power Management

机译:分层自适应动态电源管理

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摘要

The main contribution of this paper is a novel hierarchical scheme for adaptive dynamic power management (DPM) under nonstationary service requests. We model the nonstationary arrival process of service requests as a Markov-modulated stochastic process in which the stochastic process for each modulation state models a particular stationary mode of the arrival process. The bottom layer of our hierarchical architecture is a set of stationary optimal DPM policies, precalculated off-line for selected modes from policy optimization in Markov decision processes. The supervisory power manager at the top layer adaptively and optimally switches among these stationary policies on-line to accommodate the actual mode-switching arrival dynamics. Simulation results show that our approach, under highly nonstationary requests, canlead to significant power savings compared to previously proposed heuristic approaches.
机译:本文的主要贡献是一种用于非平稳服务请求下的自适应动态功率管理(DPM)的新型分层方案。我们将服务请求的非平稳到达过程建模为马尔可夫调制的随机过程,其中每个调制状态的随机过程都对到达过程的特定平稳模式进行建模。我们的分层体系结构的最底层是一组固定的最佳DPM策略,这些策略是针对离线模式从Markov决策过程中的策略优化中预先离线计算的。顶层的监督电源管理器可以在网络上自适应地和最佳地在这些固定策略之间切换,以适应实际的模式切换到达动态。仿真结果表明,与先前提出的启发式方法相比,在高度不稳定的请求下,我们的方法可以节省大量功率。

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