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ABaT-FS: Towards adjustable bandwidth and temperature via frequency scaling in scalable memory systems

机译:ABaT-FS:通过可伸缩存储系统中的频率缩放来实现可调节的带宽和温度

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摘要

Traditional memory design aims to improve bandwidth and reduce power by trading off memory width and frequency scaling (FS). In this context, we propose ABaT - FS, a hardware scheduling mechanism that, for the first time, performs FS on ranks in scalable memory systems which employ Double Data Rate (DDR) synchronous dynamic random access memories (SDRAM). ABaT FS is able to utilize different rank frequencies via controlling FS intensity - defined as the ratio between the amount of time FS is applied and the total selected scheduled cycle. We propose a design space exploration of ABaT FS with different FS intensities aiming to determine the behavior of system implications such as bandwidth, rank temperature, and power utilization. Our findings show that for 100% of FS intensity, bandwidth increases proportionally while rank temperature is increased of about +23.7 degrees C%, and energy-per-bit magnitude is decreased in up to 67%. Crown Copyright (C) 2016 Published by Elsevier B.V. All rights reserved.
机译:传统的存储器设计旨在通过权衡存储器宽度和频率缩放(FS)来提高带宽并降低功耗。在这种情况下,我们提出了ABaT-FS,这是一种硬件调度机制,它首次在采用双倍数据速率(DDR)同步动态随机存取存储器(SDRAM)的可扩展内存系统中的列上执行FS。 ABaT FS可以通过控制FS强度来利用不同的等级频率-FS强度定义为应用FS的时间量与总选定计划周期之间的比率。我们提出了具有不同FS强度的ABaT FS的设计空间探索,旨在确定系统含义的行为,例如带宽,等级温度和功率利用率。我们的研究结果表明,对于100%的FS强度,带宽按比例增加,而秩温度则增加约+23.7摄氏度,并且每位能量的幅度最多降低67%。官方版权(C)2016,由Elsevier B.V.保留所有权利。

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