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Optimizing a Reconfigurable Power Distribution Network in a Multicore Platform

机译:在多核平台中优化可重构配电网络

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The emerging trend toward utilizing chip multicore 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 the set of voltage regulators (VRs) that are required 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 reconfigurable VR-to-core power distribution network (PDN), two optimization methods are presented to maximize the system-wide energy savings: 1) reactive VR consolidation (VRCon) to reconfigure the network for maximizing the power conversion efficiency of the VRs, which is performed under the predetermined DVFS levels for the cores and 2) proactive VRCon to determine new DVFS levels for maximizing the total energy savings without any performance degradation. Along with the optimization methods for the PDN composed of homogeneous VRs, we also discuss the PDN with heterogeneous VRs, which is proposed to increase the benefits of the VRCon by incorporating VRs with a larger driving capability of load current. Results from detailed simulations based on realistic experimental setups demonstrate up to 36% VR energy loss reduction and 9% total energy saving.
机译:用户对高性能和低功耗的要求推动了利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。为了克服传统芯片级DVFS的局限性并实现最大程度的节能,最近的CMP产品中已启用了每核DVFS。虽然每核DVFS减少了CMP消耗的功率,但支持每核DVFS所需的一组电压调节器(VR)消耗的功率却变得至关重要。本文着重于CMP平台中VR的动态控制。从具有可重配置的VR到核心配电网络(PDN)的建议平台开始,提出了两种优化方法来最大化系统范围内的能源节省:1)反应式VR整合(VRCon)重新配置网络以最大化功率VR的转换效率(在内核的预定DVFS级别下执行)和2)主动VRCon以确定新的DVFS级别,以在不降低性能的情况下最大程度地节省总能源。除了针对由同质VR组成的PDN的优化方法之外,我们还讨论了具有异质VR的PDN,提出通过合并具有更大负载电流驱动能力的VR来增加VRCon的优势。基于真实实验设置的详细仿真结果表明,VR能耗降低了36%,总节能量达到了9%。

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