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Adaptive power delivery system management for many-core processors with on/off-chip voltage regulators

机译:具有片上/片外稳压器的多核处理器的自适应功率传输系统管理

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The power delivery system (PDS) plays a crucial role of guaranteeing the proper functionality of many-core processors. However, as PDS is usually optimized to provide power to the target chip at its best performance level, its energy efficiency can be seriously degraded under highly dynamic workloads, making it a major source of system power losses. On-chip voltage regulators (VR), which are able to achieve fast and fine-grained power control, have been popular choices for PDS implementation and provided design opportunities for improving system energy efficiency. In this paper, we propose the adaptive Quantized Power Management (QPM) scheme to dynamically adjust the PDS with both on-chip and off-chip VRs based on run-time workloads. Experimental results on different applications show that QPM applied on a hybrid PDS with both on/off-chip voltage regulators (VR) achieves 74.1% average overall energy efficiency, 12.3% higher than the conventional PDS with single off-chip VR.
机译:功率传输系统(PDS)在确保多核处理器的正常功能方面起着至关重要的作用。但是,由于PDS通常经过优化,可以以最佳性能为目标芯片供电,因此在高动态工作负载下,其能量效率会严重下降,从而使其成为系统功耗的主要来源。片上稳压器(VR)能够实现快速,细粒度的功率控制,已成为PDS实施的热门选择,并为提高系统能效提供了设计机会。在本文中,我们提出了一种自适应量化电源管理(QPM)方案,该方案可基于运行时工作负载动态调整片上和片外VR的PDS。在不同应用上的实验结果表明,将QPM应用于具有片上/片外稳压器(VR)的混合PDS可获得的平均总能量效率为74.1%,比具有单个片外VR的常规PDS高出12.3%。

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