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首页> 外文期刊>Electronics Letters >Autonomous high-speed serial link power management depending on required link performance for HMC
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Autonomous high-speed serial link power management depending on required link performance for HMC

机译:根据HMC所需的链路性能,自主进行高速串行链路电源管理

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Many studies on 3D-stacked dynamic RAMs (DRAMs) have been conducted to overcome the shortcomings of conventional DRAM. The hybrid memory cube (HMC) is one of the most promising 3D-stacked DRAMs, thanks to its high bandwidth and expandable structure. However, a high-speed serial link that interfaces the CPU and HMC consumes significant power, primarily because of the high overhead incurred in synchronising its clock. Although the link provides low-power modes, managing them is very difficult because of their long mode transition times. An autonomous power management method for the high-speed link is proposed. The proposed method determines the optimal number of active links while satisfying the required link performance. Simulations demonstrate that the proposed method reduces link power consumption by an average of 63.06% with a performance degradation of only 1.36%. Therefore, this proposed autonomous link power management is an outstanding option for low-power HMC-based systems.
机译:为了克服常规DRAM的缺点,已经进行了许多关于3D堆叠动态RAM(DRAM)的研究。混合存储多维数据集(HMC)由于其高带宽和可扩展的结构而成为最有前途的3D堆叠DRAM之一。但是,连接CPU和HMC的高速串行链路会消耗大量功率,这主要是因为同步其时钟会产生高开销。尽管链路提供了低功耗模式,但由于其模式转换时间较长,因此管理它们非常困难。提出了一种用于高速链路的自主电源管理方法。所提出的方法确定活动链接的最佳数量,同时满足所需的链接性能。仿真表明,该方法平均可将链路功耗降低63.06%,而性能下降仅为1.36%。因此,对于基于HMC的低功率系统,此建议的自治链路功率管理是一个出色的选择。

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