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NBTI and Power Reduction Using a Workload-Aware Supply Voltage Assignment Approach

机译:NBTI和功率降低使用工作负载感知电源电压分配方法

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Abstract Supply voltage assignment (SVA) can alleviate the performance aging induced by the negative bias temperature instability (NBTI) effect. However, due to the random characteristic of an actual system workload, it is difficult to estimate the aging rate and control the supply voltage reasonably. To solve this problem, we present a workload-aware SVA method (WSVA) that encapsulates the workload change into the aging estimation using an LUT-based approach. Moreover, an NBTI and leakage co-optimization strategy based on an integer linear programming (ILP) approach is proposed to obtain the optimal input vector in standby mode. Simulation experiments on multiple benchmark circuits demonstrate that the LUT-based approach can track the dynamic change of the workload online and provide an accurate aging estimate for SVA with little computation cost. Compared with the SVA method without considering the workload, the proposed aging estimation approach and the optimal input vector selection strategy in the WSVA framework can enable the CMOS circuit conserve additional power dissipation while guaranteeing the performance requirements.
机译:摘要供应电压分配(SVA)可以缓解负偏置温度不稳定(NBTI)效应引起的性能老化。然而,由于实际系统工作量的随机特性,难以估计老化率并合理地控制电源电压。为了解决这个问题,我们介绍了一种使用基于LUT的方法封装在老化估计中的工作负载感知SVA方法(WSVA)。此外,提出了基于整数线性编程(ILP)方法的NBTI和泄漏协同优化策略,以在待机模式下获得最佳输入向量。多个基准电路上的仿真实验表明,基于LUT的方法可以在线跟踪工作负载的动态变化,并为SVA提供了较少的计算成本的准确老化估计。与SVA方法相比,不考虑工作负载,所提出的老化估计方法和WSVA框架中的最佳输入矢量选择策略可以使CMOS电路节省额外的功耗,同时保证性能要求。

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