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Approximation-Based System Implementation for Real-Time Minimum Energy Point Tracking over a Wide Operating Performance Region

机译:基于近似值的系统实现,可在较宽的运行性能区域内进行实时最小能量点跟踪

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摘要

This paper refers to the optimal voltage pair, which minimizesthe energy consumption of LSI circuits under a target delay constraint,as a Minimum Energy Point (MEP). This paper proposes an approximationbasedimplementation method for an MEP tracking system over a widevoltage region. This paper focuses on the MEP characteristics that the energyloss is sufficiently small even though the voltage point changes nearthe MEP. For example, the energy loss is less than 5 even though theestimated MEP differs by a few tens of millivolts in comparison with theactual MEP. Therefore, the complexity for determining the MEP is relaxedby approximating complex operations such as the logarithmic or the exponentialfunctions in the MEP tracking algorithm, which leads to hardware-/software-efficient implementation. When the MEP tracking algorithm isimplemented in software, the MEP estimation time is reduced from 1 msto 13 s by the proposed approximation. When implemented in hardware,the proposed method can reduce the area of an MEP estimation circuit to aquarter. Measurement results of a 32-bit RISC-V processor fabricated in a65-nm SOTB process technology show that the energy loss introduced bythe proposed approximation is less than 2 in comparison with the MEPoperation. Furthermore, we show that the MEP can be tracked within about45 microseconds by the proposed MEP tracking system.
机译:本文将最佳电压对称为最小能量点(MEP),该电压对在目标延迟约束下使LSI电路的能耗最小化。该文提出了一种基于近似的宽电压区MEP跟踪系统的实现方法。本文重点介绍了MEP特性,即即使电压点在MEP附近发生变化,能量损失也足够小。例如,即使估计的 MEP 与实际 MEP 相比相差几十毫伏,能量损失也小于 5%。因此,通过逼近 MEP 跟踪算法中的对数或指数函数等复杂运算,可以降低确定 MEP 的复杂性,从而实现硬件/软件的高效实现。在软件中实现MEP跟踪算法时,通过所提出的近似,MEP估计时间从1 ms减少到13 s。当在硬件中实现时,所提出的方法可以将MEP估计电路的面积减少到四分之一。采用 65 nm SOTB 工艺技术制造的 32 位 RISC-V 处理器的测量结果表明,与 MEP 操作相比,所提出的近似引入的能量损耗小于 2%。此外,我们表明,所提出的 MEP 跟踪系统可以在大约 45 微秒内跟踪 MEP。

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