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Power management of hybrid DRAM/PRAM-based main memory

机译:基于混合DRAM / PRAM的主存储器的电源管理

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Hybrid main memory consisting of DRAM and non-volatile memory is attractive since the non-volatile memory can give the advantage of low standby power while DRAM provides high performance and better active power. In this work, we address the power management of such a hybrid main memory consisting of DRAM and phase-change RAM (PRAM). In order to reduce DRAM refresh energy which occupies a significant portion of total memory energy, we present a runtime-adaptive method of DRAM decay. In addition, we present two methods, DRAM bypass and dirty data keeping, for further reduction in refresh energy and memory access latency, respectively. The experiments show that by reducing DRAM refreshes, we can obtain 23.5%∼94.7% reduction in the energy consumption with negligible performance overhead compared with the conventional DRAM-only main memory.
机译:由DRAM和非易失性存储器组成的混合主存储器具有吸引力,因为非易失性存储器可提供低待机功耗的优势,而DRAM可提供高性能和更好的有功功率。在这项工作中,我们着眼于这种由DRAM和相变RAM(PRAM)组成的混合主存储器的电源管理。为了减少DRAM刷新能量(它占总内存能量的很大一部分),我们提出了一种运行时自适应的DRAM衰减方法。另外,我们提出了两种方法,分别是DRAM旁路和脏数据保存,分别用于进一步减少刷新能量和内存访问延迟。实验表明,与传统的仅DRAM主存储器相比,通过减少DRAM刷新,我们可以将能耗降低23.5%〜94.7%,而性能开销却可以忽略不计。

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