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首页> 外文期刊>Very Large Scale Integration (VLSI) Systems, IEEE Transactions on >Quasi-Static Voltage Scaling for Energy Minimization With Time Constraints
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Quasi-Static Voltage Scaling for Energy Minimization With Time Constraints

机译:具有时间约束的最小化准静态电压定标

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摘要

Supply voltage scaling and adaptive body biasing (ABB) are important techniques that help to reduce the energy dissipation of embedded systems. This is achieved by dynamically adjusting the voltage and performance settings according to the application needs. In order to take full advantage of slack that arises from variations in the execution time, it is important to recalculate the voltage (performance) settings during runtime, i.e., online. However, optimal voltage scaling algorithms are computationally expensive, and thus, if used online, significantly hamper the possible energy savings. To overcome the online complexity, we propose a quasi-static voltage scaling (QSVS) scheme, with a constant online time complexity ${cal O}(1)$. This allows to increase the exploitable slack as well as to avoid the energy dissipated due to online recalculation of the voltage settings.
机译:电源电压缩放和自适应主体偏置(ABB)是有助于减少嵌入式系统能耗的重要技术。这可以通过根据应用需求动态调整电压和性能设置来实现。为了充分利用执行时间变化引起的松弛,重要的是重新计算运行时间即在线的电压(性能)设置。但是,最佳的电压缩放算法在计算上很昂贵,因此,如果在线使用该算法,则会显着妨碍可能的节能。为了克服在线复杂度,我们提出了一种准静态电压缩放(QSVS)方案,该方案具有恒定的在线时间复杂度$ {cal O}(1)$。这允许增加可利用的余量,并避免由于在线重新计算电压设置而耗散的能量。

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