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Hamming hypermeshes: High performance interconnection networks for pin-out limited systems

机译:汉明(Hamming)Hyperheshes:适用于引脚受限的系统的高性能互连网络

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Hypermeshes are promising candidates for the construction of high performance interconnection networks. Their main advantage is that they present a low diameter, high bandwidth, low latency network, which can naturally embed a wide range of communication patterns. Since a VLSI implementation of such a system is still far-off, we argue that any implementation is pin-out, rather than wire density limited. We will study the networks under this assumption. In this paper we introduce the Hamming hypermesh, which has a lower pin-out, in an attempt to enhance the performance of the network. It is shown both by theoretical work and simulations that this implementation outperforms previously proposed hypermeshes under the constant pin-out argument. Furthermore Hamming hypermeshes have the additional benefit of providing higher bandwidth channels and simpler switching structures. Since it has been shown that complete hypermeshes outperform the mesh, the torus, low dimensional k-ary n-cubes (with and without bypass channels), and multi-stage interconnection networks under the constant pin-out argument, it follows that incomplete hypermeshes outperform them as well.
机译:超网格是构建高性能互连网络的有希望的候选者。它们的主要优点是它们呈现出一种低直径,高带宽,低延迟的网络,可以自然地嵌入各种通信模式。由于此类系统的VLSI实现仍遥遥无期,因此我们认为任何实现都是针脚输出,而不是受线密度限制。我们将在此假设下研究网络。在本文中,我们介绍了具有较低引脚排列的汉明超级网格,以增强网络的性能。理论工作和仿真均表明,在恒定引出线参数下,该实现优于先前提出的超混合。此外,汉明超混合还具有提供更高带宽信道和更简单交换结构的额外优势。由于已经证明,在恒定引出线参数的作用下,完全超网格的性能优于网格,圆环,低维k元n立方体(具有和不具有旁路通道)和多级互连网络,因此得出不完全超网格的性能也胜过他们。

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