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A new power efficient high performance interconnection network for many-core processors

机译:适用于多核处理器的新型高效节能高性能互连网络

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Next generation high performance computing will most likely depend on the massively parallel computers. The overall performance of a massively parallel computer system is heavily affected by the interconnection network and its processing nodes. Continuing advances in VLSI technologies promise to deliver more power to individual nodes. However, the on-chip interconnection networks consume up to 50% of the total chip power and off-chip bandwidth is limited to the maximum number of possible out going physical links. In addition, the long wiring and low performance of communication network overwhelm the benefit of parallel computer system whereas it increases total cost. In this paper, we propose a new interconnection network that reduces the problems of high power consumption, long wiring length and low bandwidth issues. We have measured the static network performance and required power consumption of our proposed '3D-TESH' interconnection network and compared the performance with other networks at different levels of hierarchy such as inter-chips, inter-nodes and inter-cabinets. 3D-TESH network has achieved about 52.08% better diameter and about 45.71% better average distance than the 3D-Torus network with 12.61% less router power usage at on-chip level. Furthermore, 3D-TESH requires about 41% less router power usage than 5D-Torus at the on-chip level.
机译:下一代高性能计算很可能将取决于大规模并行计算机。大规模并行计算机系统的整体性能在很大程度上受到互连网络及其处理节点的影响。 VLSI技术的不断进步有望为单个节点提供更多的功率。但是,片上互连网络最多消耗芯片总功率的50%,并且片外带宽被限制为可能的向外物理链路的最大数量。另外,通信网络的长布线和低性能淹没了并行计算机系统的优点,而这却增加了总成本。在本文中,我们提出了一种新的互连网络,该互连网络可减少高功耗,较长的布线长度和低带宽问题。我们已经测量了我们提出的“ 3D-TESH”互连网络的静态网络性能和所需的功耗,并将其与处于不同层次结构的其他网络(例如芯片间,节点间和机柜间)的性能进行了比较。与3D-Torus网络相比,3D-TESH网络的直径提高了约52.08%,平均距离提高了约45.71%,片上路由器功耗降低了12.61%。此外,在片上级别,3D-TESH所需的路由器功耗比5D-Torus少约41%。

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