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Light trees: optical multicasting for improved performance in wavelength routed networks

机译:灯树:光多播可改善波长路由网络中的性能

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We introduce the concept of a light-tree in a wavelength-routed optical network. A light-tree is a point-to-multipoint generalization of a lightpath. A lightpath is a point-to-point all-optical wavelength channel connecting a transmitter at a source node to a receiver at a destination node. Lightpath communication can significantly reduce the number of hops (or lightpaths) a packet has to traverse; and this reduction can, in turn, significantly improve the network's throughput. We extend the lightpath concept by incorporating an optical multicasting capability at the routing nodes in order to increase the logical connectivity of the network and further decrease its hop distance. We refer to such a point-to-multipoint extension as a light-tree. Light-trees can not only provide improved performance for unicast traffic, but they naturally can better support multicast traffic and broadcast traffic. In this study, we shall concentrate on the application and advantages of light-trees to unicast and broadcast traffic. We formulate the light-tree-based virtual topology design problem as an optimization problem with one of two possible objective functions: for a given traffic matrix, (i) minimize the network-wide average packet hop distance, or (ii) minimize the total number of transceivers in the network. We demonstrate that an optimum light-tree-based virtual topology has clear advantages over an optimum lightpath-based virtual topology with respect to the above two objectives.
机译:我们介绍了波长路由光网络中的光树概念。灯树是光路的点对多点概括。光路径是将源节点处的发送器连接到目的节点处的接收器的点对点全光波长通道。光路径通信可以显着减少数据包必须经过的跳数(或光路径)。而这种减少又可以显着提高网络的吞吐量。我们通过在路由节点处合并光多播功能来扩展光路概念,以增加网络的逻辑连接性并进一步减少其跳距。我们将这种点对多点扩展称为轻树。轻树不仅可以提高单播流量的性能,而且自然可以更好地支持多播流量和广播流量。在本研究中,我们将集中讨论光树在单播和广播流量中的应用和优势。我们将基于轻树的虚拟拓扑设计问题公式化为具有两个可能目标函数之一的优化问题:对于给定的流量矩阵,(i)最小化网络范围内的平均数据包跳距,或(ii)最小化总范围网络中收发器的数量。我们证明,相对于上述两个目标,基于最佳光树的虚拟拓扑比基于最佳光路的虚拟拓扑具有明显的优势。

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