VRCon:多核平台中电压调节器的动态重构

Woojoo Lee, Yanzhi Wang, Massoud Pedram
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引用次数: 23

摘要

使用支持动态电压和频率缩放(DVFS)的芯片多核处理器(cmp)的新兴趋势是由用户对高性能和低功耗的需求驱动的。为了克服传统的芯片范围DVFS的局限性,并实现最大限度的节能,在最近的CMP产品中启用了单核DVFS。虽然每核DVFS降低了CMP的功耗,但支持每核DVFS所需的许多稳压器(vr)的功耗变得至关重要。本文主要研究了CMP平台中vr的动态控制问题。从一个具有可配置虚拟现实到核心配电网络的拟议平台开始,提出了两种优化方法来最大化系统范围的节能:(i)被动虚拟现实整合,重新配置网络,以最大限度地提高虚拟现实在预先确定的核心DVFS水平下的功率转换效率;(ii)主动虚拟现实整合,以确定新的DVFS水平,以最大限度地提高总节能,而不会导致任何性能下降。详细的实验结果表明,高达35%的虚拟现实能量损失减少和14%的总节能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
VRCon: Dynamic reconfiguration of voltage regulators in a multicore platform
The emerging trend toward utilizing chip multi-core processors (CMPs) that support dynamic voltage and frequency scaling (DVFS) is driven by user requirements for high performance and low power. To overcome limitations of the conventional chip-wide DVFS and achieve the maximum possible energy saving, per-core DVFS is being enabled in the recent CMP offerings. While power consumed by the CMP is reduced by per-core DVFS, power dissipated by many voltage regulators (VRs) needed to support per-core DVFS becomes critical. This paper focuses on the dynamic control of the VRs in a CMP platform. Starting with a proposed platform with a configurable VR-to-core power distribution network, two optimization methods are presented to maximize the system-wide energy savings: (i) reactive VR consolidation to reconfigure the network for maximizing the power conversion efficiency of the VRs performed under the pre-determined DVFS levels for the cores, and (ii) proactive VR consolidation to determine new DVFS levels for maximizing the total energy savings without any performance degradation. Results from detailed experiments demonstrate up to 35% VR energy loss reduction and 14% total energy saving.
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