Minimizing Energy Consumption of Banked Memories Using Data Recomputation

Hakduran Koc, O. Ozturk, M. Kandemir, S. Narayanan, E. Ercanli
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引用次数: 37

Abstract

Banking has been identified as one of the effective methods using which memory energy can be reduced. We propose a novel approach that improves the energy effectiveness of banked memory architecture by performing extra computations if doing so makes it unnecessary to reactivate a bank which is in the low-power operating mode. More specifically, when an access to a bank, which is in the low-power mode, is to be made, our approach first checks whether the data required from that bank can be recomputed by using the data that are currently stored in already active banks. If this is the case, we do not turn on the bank in question, and instead, recalculate the value of the requested data using the values of the data stored in the active banks. Given the fact that the contribution of the leakage consumption to overall energy budget keeps increasing, the proposed approach has the potential of being even more attractive in the future. Our experimental results collected so far clearly show that this recomputation based approach can reduce energy consumption significantly
利用数据重计算最小化存储存储器的能耗
存储已被确定为一种有效的方法,使用它可以减少记忆能量。我们提出了一种新的方法,通过执行额外的计算来提高银行内存架构的能源效率,如果这样做使得没有必要重新激活处于低功耗工作模式的银行。更具体地说,当要访问处于低功耗模式的银行时,我们的方法首先检查是否可以通过使用当前存储在已经活跃的银行中的数据来重新计算该银行所需的数据。如果是这种情况,我们不打开有问题的银行,而是使用存储在活动银行中的数据值重新计算所请求数据的值。鉴于泄漏消耗对整体能源预算的贡献不断增加,建议的方法在未来具有更大的吸引力。我们目前收集到的实验结果清楚地表明,这种基于重新计算的方法可以显著降低能耗
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