SRT interconnection network on 3D stacked implementation by considering thermo-radiation

Y. Inoguchi, T. Matsuzawa, S. Horiguchi
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引用次数: 2

Abstract

This paper addresses the reconfiguration of Shifted Recursive Torus (SRT) network by considering thermo-radiation in stacked wafers implementation. The SRT networks are hierarchical torus networks and suitable for massively parallel systems. We propose fault-tolerance schemes for SRT networks to keep high network performance in stacked wafers implementation. The cooling of stacked wafers, however, is one of the most crucial problems for implementation of massively parallel systems. Two cooling approaches have been proposed for SRT in stacked implementation. Introducing a thermo-radiation model into SRT in stacked implementation, reconfiguration performance of SRT was evaluated. Comparing the system yields and the maximum temperatures, these cooling approaches can keep high system yield and lower temperature of 3D implementation.
考虑热辐射的SRT三维堆叠互连网络实现
本文通过考虑堆叠晶圆实现中的热辐射,讨论了位移递归环面(SRT)网络的重构。SRT网络是分层环面网络,适用于大规模并行系统。我们提出了SRT网络的容错方案,以保持堆叠晶圆实现中的高网络性能。然而,堆叠晶圆的冷却是实现大规模并行系统的最关键问题之一。针对SRT的堆叠实现,提出了两种冷却方法。将热辐射模型引入到SRT的堆叠实现中,对SRT的重构性能进行了评价。通过对系统良率和最高温度的比较,这些冷却方法可以保持较高的系统良率和较低的3D实现温度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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