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Efficient Wakeup Scheduling Considering Both Resource Usage and Timing Budget for Power Gating Designs

机译:同时考虑资源使用和时序预算的功率门控设计的高效唤醒计划

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摘要

Power gating has been a very effective way to reduce power leakage. Normally, wakeup scheduling is required to control the turn-on times of sleep transistors to limit the surge current during the wakeup process. In this paper, a voltage sensor is adopted to compare the virtual ground voltage with the predesigned reference voltages, and use the result to determine the turn-on times of sleep transistors. We then propose a novel wakeup scheduling formulation that considers the tradeoff between wakeup times and hardware resources incurred by the voltage sensor. To address this problem, on the one hand, an efficient algorithm is proposed to find a wakeup scheduling with minimum wakeup time under the resource constraint. On the other hand, the algorithm to find a wakeup scheduling with minimum resource usage under the timing budget is presented. Experimental results show that with little increase in wakeup times, our algorithm can achieve significant hardware resource reduction for power gating designs.
机译:电源门控是减少电源泄漏的非常有效的方法。通常,需要进行唤醒调度来控制睡眠晶体管的导通时间,以限制唤醒过程中的浪涌电流。本文采用电压传感器将虚拟接地电压与预先设计的参考电压进行比较,并使用结果确定睡眠晶体管的导通时间。然后,我们提出一种新颖的唤醒调度公式,该公式考虑了唤醒时间与电压传感器产生的硬件资源之间的折衷。为了解决这个问题,一方面,提出了一种有效的算法来找到在资源约束下具有最小唤醒时间的唤醒调度。另一方面,提出了在时序预算下找到具有最小资源使用量的唤醒调度的算法。实验结果表明,在不增加唤醒时间的情况下,我们的算法可以显着减少电源门控设计的硬件资源。

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