Conflict-free channel assignment for an optical cluster-based shuffle network configuration

K. A. Aly
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引用次数: 0

Abstract

A passive optical realization of large expandable shuffle networks is considered, where the general (p, k) shuffle function interconnects star-coupled clusters of time and/or wavelength multiplexed nodes. This configuration enables network partitioning into independent subnetworks that can emulate various indirect cube topologies on a virtual point-to-point basis. Node transmitters are assigned fixed channels and reconfiguring the partition and/or the individual sub-network topologies is achieved by monitoring the appropriate channels. The considered network configuration can function as a general-purpose optical interconnect for a variety of heterogeneous traffic sources, such as multicomputers and ATM network interface units, communicating independently within logically defined subnetworks. The paper derives a conflict-free channel partition and assignment map for a general (p, k) cluster shuffle using a minimal number of channel sets.
基于光集群的shuffle网络配置的无冲突信道分配
考虑了大型可扩展洗牌网络的无源光学实现,其中一般(p, k)洗牌函数互连时间和/或波长复用节点的星耦合簇。此配置支持将网络划分为独立的子网,这些子网可以在虚拟点对点的基础上模拟各种间接多维数据集拓扑。节点发送器被分配固定的信道,并且通过监视适当的信道来重新配置分区和/或单个子网拓扑结构。所考虑的网络配置可以作为各种异构流量源(如多计算机和ATM网络接口单元)的通用光互连,在逻辑定义的子网内独立通信。本文利用最小数量的信道集,导出了一般(p, k)簇洗牌的无冲突信道划分和分配映射。
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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