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AWG-based WDM ring networks: High-performance and low-cost system designs

机译:基于AWG的WDM环网:高性能和低成本系统设计

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Optical packet switching (OPS) ring networks are regarded as being promising solutions for future optical metropolitan area networks. In this paper, we propose novel arrayed-waveguide grating (AWG)-based wavelength division multiplexing (WDM) ring network systems that are aimed at achieving low-cost, scalable, and high-performance systems. By exploiting the cyclic routing properties and spatial wavelength reuse of a passive 2*2 AWG device, we redesign the ring network into a two-subring network, connected through the AWG device. The network is governed by a novel distributed medium access control (MAC) scheme, and we further derive a highly efficient and fair bandwidth allocation in accordance with a quota. A previously proposed experimental optical packet-switched WDM metro-ring network, called HOPSMAN, has shown to have exceptional performance among the OPS ring network studies. We show simulation and analytic results to demonstrate that our proposed system have achieved enhanced performance of the TT (tunable transmitter)-TR (tunable receiver)-based HOPSMAN by 1.5 times but have used only low-cost TT-FR (fixed-tuned receiver) or FT (fixed-tuned transmitter)-FR optical devices. Thus, the proposed networks achieve exceptional network throughput and also greatly reduce system costs. (C) 2018 Elsevier B.V. All rights reserved.
机译:光分组交换(OPS)环形网络被认为是未来光城域网的有前途的解决方案。在本文中,我们提出了一种新颖的基于阵列波导光栅(AWG)的波分复用(WDM)环形网络系统,旨在实现低成本,可扩展的高性能系统。通过利用无源2 * 2 AWG设备的循环路由属性和空间波长复用,我们将环形网络重新设计为通过AWG设备连接的两子环网络。该网络由一种新颖的分布式媒体访问控制(MAC)方案控制,并且我们进一步根据配额导出了高效且公平的带宽分配。先前提出的实验性光分组交换WDM城域网,称为HOPSMAN,在OPS环网研究中显示出卓越的性能。我们显示了仿真和分析结果,以证明我们提出的系统已将基于TT(可调发射器)-TR(可调接收器)的HOPSMAN的性能提高了1.5倍,但仅使用了低成本的TT-FR(固定调谐接收器) )或FT(固定调谐发射机)-FR光学设备。因此,提出的网络实现了异常的网络吞吐量,并且还大大降低了系统成本。 (C)2018 Elsevier B.V.保留所有权利。

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