Channel pre-allocation for single-hop WDM networks with multiple receivers

Sugang Xu, Y. Tanaka
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引用次数: 1

Abstract

WDM optical networks represent the direction to the future high capacity access network applications. In this paper, we investigate the influence of tuning latency on the performance of different architectures of single-hop WDM star networks. Two configurations are mainly considered: one slowly tunable transmitter and multiple fixed receivers (STT/MFRs) and single tunable transmitter and single fixed receiver (TT/FR). For both configurations one home channel is pre-allocated to each node. Assuming the traffic is non-uniformly distributed, an optimal channel allocation with a simple mixed integer linear programming model is proposed for STT/MFRs. To investigate the performance, evaluation through simulations is done in terms of network throughput, packet delay. The results show us TT/FR is tuning latency architecture, while STT/FR is not a tuning latency sensitive architecture. TT/FR configuration requires very quickly tunable transmitters, while STT/MFRs configuration can make use of the off-the-shelf low cost slowly tunable optical components to yield good performance.
多接收机单跳WDM网络的信道预分配
WDM光网络代表了未来大容量接入网的应用方向。在本文中,我们研究了调优延迟对单跳WDM星型网络不同架构性能的影响。主要考虑两种配置:一个缓慢可调的发射机和多个固定接收器(STT/ mfr)和一个可调的发射机和一个固定接收器(TT/FR)。对于这两种配置,每个节点都预先分配了一个主通道。在通信量非均匀分布的前提下,提出了一种基于简单混合整数线性规划模型的STT/MFRs最优信道分配方法。为了研究其性能,通过仿真对网络吞吐量、数据包延迟进行了评估。结果表明,TT/FR是调优延迟架构,而STT/FR不是调优延迟敏感架构。TT/FR配置需要非常快速可调谐的发射机,而STT/MFRs配置可以利用现成的低成本缓慢可调谐的光学元件来产生良好的性能。
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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