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The effect of the degree of multistage interconnection networks on their performance: the case of delta and over-sized delta networks

机译:多级互连网络的程度对其性能的影响:增量和超大型增量网络的情况

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Interconnection network performance is a key factor when constructing parallel computers. Today's technological progress makes it possible to build and use crossbars of sizes up to 128. Crossbars can be used as switching elements (SEs) in parallel architectures intercommunication systems such as multistage interconnection networks (MINs). A MIN is usually defined, among others, by its topology. One of the factors defining the topology of a MIN is its degree. The degree of a MIN is the size of the SE of which it is composed. We are interested in studying the influence of the degree of two classes of MINs on their performance. The tested MINs classes are the famous delta networks and a subclass of this family called the over-sized delta networks. This study is to be used in future work in order to evaluate the use of MINs as an intercommunication medium in symmetric multiprocessors.
机译:互连网络的性能是构造并行计算机时的关键因素。当今的技术进步使构建和使用最大尺寸为128的纵横制开关成为可能。纵横制开关可用作并行体系结构互通系统(如多级互连网络(MIN))中的交换元件(SE)。 MIN通常由拓扑来定义。定义MIN拓扑的因素之一是其程度。 MIN的程度是其组成SE的大小。我们有兴趣研究两类MIN的程度对其性能的影响。经过测试的MIN类是著名的三角洲网络,也是该家族的一个子类,称为超大型三角洲网络。这项研究将在将来的工作中使用,以评估MIN作为对称多处理器中的互通介质的使用。

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