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Energy efficient Reconfigurable Computing with Adaptive Voltage and Logic scaling.

机译:具有自适应电压和逻辑缩放功能的高能效可重构计算。

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摘要

This paper investigates a novel energy-proportional concept that combines closed-loop voltage scalability and run-time hardware reconfiguration. Voltage scaling is based on in-situ detectors that allow the device to detect valid working voltage and frequency pairs at run-time. The combined approach named AVLS (Adaptive Voltage and Logic Scaling) enables the adaptation of capacitance, voltage and frequency to obtain power and energy savings based on workload, process and operating conditions in a closed-loop configuration. The technique is applied to a reconfigurable motion estimation processor that can be configured with a variable number of execution units and it is used as a test vehicle. The results demonstrate that the proposed voltage scaling can obtain up to 85% reduction in energy compared with nominal voltage operation at the same frequency. This efficient energy point is obtained at a voltage of 0.62 V and frequency of 56 MHz compared with running the core at the same frequency and nominal 1 V. The addition of logic scalability means that if enough device resources are available a parallel configuration with six execution units operating at 0.62 V reduces energy by up to 95% compared with a single execution unit operating at 1 V and the same frequency.
机译:本文研究了一种新颖的能量比例概念,该概念结合了闭环电压可扩展性和运行时硬件重新配置。电压缩放基于原位检测器,该检测器使设备可以在运行时检测有效的工作电压和频率对。组合的方法称为AVLS(自适应电压和逻辑缩放),可以在闭环配置中根据工作量,过程和操作条件来调整电容,电压和频率,以节省功率和能源。该技术被应用于可重构运动估计处理器,该处理器可以配置有可变数量的执行单元,并且可以用作测试车辆。结果表明,与在相同频率下的标称电压工作相比,建议的电压定标可以减少多达85%的能量。与将内核以相同的频率和标称的1 V运行相比,在0.62 V的电压和56 MHz的频率下可获得此有效的能量点。逻辑可扩展性的增加意味着,如果有足够的设备资源可用,则具有六个执行的并行配置与在1 V和相同频率下工作的单个执行单元相比,在0.62 V下工作的单元将能耗降低多达95%。

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  • 作者

    Nunez-Yanez, Jose L;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 eng
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