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Sleep-Aware Variable partitioning for energy-efficient hybrid PRAM and DRAM main memory

机译:睡眠感知可变分区,用于节能混合峰和DRAM主存储器

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Energy consumption of memories is always a significant issue for computing systems. Recently, hybrid PRAM and DRAM memory architectures have been proposed. It combines the advantages of DRAM and PRAM, such as low leakage power in PRAM and short write latency in DRAM. However, the leakage power in DRAM is still considerable in hybrid memories. The leakage power can only be reduced by turning DRAM into sleep state. In this paper, a novel proximity concept is proposed to guide the variable partitioning to maximize the possibility of turning DRAM into sleep mode. A novel Sleep-Aware Variable Partition Algorithm (SAVPA) is then proposed with the objective of maximizing the sleep time of DRAM while satisfying the performance and endurance constraints. The experiment results show that SAVPA reduces the energy consumption by 11.25% in average (up to 15.84%) compared to the state-of-art work with simple sleep technique.
机译:存储器的能量消耗始终是计算系统的重要问题。最近,已经提出了混合PRAM和DRAM内存架构。它结合了DRAM和PRAM的优点,例如在DRAM中的PRAM中的低漏电和短写延迟。然而,在混合存储器中,DRAM中的泄漏功率仍然相当可观。泄漏功率只能通过将DRAM转换为睡眠状态来降低。在本文中,提出了一种新颖的邻近概念来引导变量分区,以最大化将DRAM转换为睡眠模式的可能性。然后提出了一种新颖的睡眠感知可变分区算法(SAVPA),其目的是最大化DRAM的睡眠时间,同时满足性能和耐久性约束。实验结果表明,与简单的睡眠技术的最先进的工作相比,SAVPA平均降低了11.25%的能源消耗(高达15.84%)。

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