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Improving energy efficiency of DRAM by exploiting half page row access

机译:通过利用半页行访问来提高DRAM的能源效率

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DRAM energy is an important component to optimize in modern computing systems. One outstanding source of DRAM energy is the energy to fetch data stored on cells to the row buffer, which occurs during two DRAM operations, row activate and refresh. This work exploits previously proposed half page row access, modifying the wordline connections within a bank to halve the number of cells fetched to the row buffer, to save energy in both cases. To accomplish this, we first change the data wire connections in the sub-array to reduce the cost of row buffer overfetch in multi-core systems which yields a 12% energy savings on average and a slight performance improvement in quad-core systems. We also propose charge recycling refresh, which reuses charge left over from a prior half page refresh to refresh another half page. Our charge recycling scheme is capable of reducing both auto- and self-refresh energy, saving more than 15% of refresh energy at 85°C, and provides even shorter refresh cycle time. Finally, we propose a refresh scheduling scheme that can dynamically adjust the number of charge recycled half pages, which can save up to 30% of refresh energy at 85°C.
机译:DRAM能量是在现代计算系统中进行优化的重要组成部分。 DRAM能量的一种杰出来源是将存储在单元上的数据取到行缓冲器的能量,这种能量发生在两次DRAM操作,行激活和刷新期间。这项工作利用了先前提出的半页行访问,修改了存储体中的字线连接,以使获取到行缓冲区的单元数量减半,从而在两种情况下均节省了能量。为此,我们首先更改子阵列中的数据线连接,以降低多核系统中行缓冲区超取的成本,这平均可节省12%的能源,并在四核系统中略微改善性能。我们还提出了收费回收刷新,该刷新可重用前半页刷新剩余的电荷来刷新另一半页。我们的电荷回收方案能够减少自动和自刷新能量,在85°C时可节省超过15%的刷新能量,并提供更短的刷新周期时间。最后,我们提出了一种刷新调度方案,该方案可以动态调整充电循环半页的数量,在85°C时最多可以节省30%的刷新能量。

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