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Efficient leakage power saving by sleep depth controlling for Multi-mode Power Gating

机译:高效泄漏功率通过睡眠深度控制多模功率门控

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Power Gating (PG) and Body Biasing (BB) are effective schemes to save leakage power in standby-time. However, in run-time, their large overhead energy and latency for sleep control prevent the circuit from saving power in short idle times. To reduce those overheads, advanced PG and BB using shallow sleep mode are studied. Those circuits achieve leakage saving even in short idle time. The depth of sleep mode has trade-offs between the overheads and the amount of saved leakage power; hence, making decision of depth of a shallow sleep is an important issue to maximize total leakage saving. However, the depth which achieves best leakage saving depends heavily on run-time factors, such as application behavior and temperature. Thus, the conventional circuit has multiple shallow sleep modes and chooses an adequate mode in run-time. However, it causes large overhead power because of additional voltage generators for shallow sleep modes. In this paper, we propose a sleep control scheme named Opt-static for run-time leakage saving. Our scheme uses only one shallow sleep mode, but its depth is reconfigurable. It successfully achieves leakage saving by adopting its depth with run-time factors. In addition, our scheme needs only one active voltage generator; hence overhead power associated with voltage generators is smaller than the conventional circuit which has multiple shallow sleep modes. Experimental results show that our schemes applied to Multi-mode PG achieves higher leakage saving than the conventional Multi-mode PG which has two shallow sleep modes, although it does not take into account for overhead power of voltage generators.
机译:功率门控(PG)和身体偏置(BB)是节省待机时间的泄漏功率的有效方案。但是,在运行时,睡眠控制的大开销能量和延迟防止电路在短怠速时间内节省电力。为了减少使用浅睡眠模式的高级PG和BB,是使用浅睡眠模式。即使在空闲时间内,那些电路也实现了泄漏。睡眠模式的深度在开销和节省泄漏功率的数量之间具有权衡;因此,制定浅睡眠深度的决定是最大限度地泄漏节省的重要问题。然而,实现最佳泄漏储存的深度在很大程度上取决于运行时因子,例如应用行为和温度。因此,传统电路具有多个浅睡眠模式,并在运行时选择足够的模式。然而,由于浅睡眠模式的额外电压发生器,它导致大的开销电源。在本文中,我们提出了一个名为Opt-Static的睡眠控制方案进行运行时间泄漏。我们的方案只使用一个浅睡眠模式,但它的深度是可重新配置的。它通过采用与运行时因子的深度成功实现泄漏。此外,我们的方案只需要一个有源电压发生器;因此,与电压发生器相关联的架空电力小于具有多个浅睡眠模式的传统电路。实验结果表明,我们应用于多模PG的方案比具有两个浅睡眠模式的传统多模PG实现更高的漏电,尽管它没有考虑到电压发生器的架空功率。

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