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Optimising the efficiency of coherent optical packet switched networks

机译:优化相干光分组交换网络的效率

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摘要

There is a continuing need to increase throughput in optical networks to satisfy the demands of internet applications. However, the non-linear Shannon capacity ofudstandard single mode fibre is being approached. Also, almost all of the power used in optical networks is used by electronic routers. One possible solution to deal withudboth problems is to use optical packet switching. Optical packet switching uses fast switching tuneable lasers, which can change wavelength in the order of a severaludnanoseconds, to dynamically vary wavelength assignments in a network, and thus achieve routing in the network without electronic routers. In addition, fastudwavelength assignment reduces waiting times, resulting in better utilization of network resources. ududHowever, the frequency dynamics of the tuneable lasers after switching wavelengths increases the waiting times required to successfully transmit data packets. In this thesis, frequency and phase dynamics of a tuneable laserudtransmitter, after a wavelength switching event, are initially characterised accurately using a novel technique. The effects that the frequency dynamics have on the transmission of coherent optical communication signals are mitigated using doubly differential decoding, a new approach proposed in this work for application in optical packet switched networks. This technique reduces the waiting times required to successfully transmit data after a wavelength switching event, and this enhances overall network efficiency and throughput. In addition, this work proposes and demonstrates the use of a least-mean squares algorithm to overcome polarisation demultiplexing issues which are present in these networks, which also decreases waiting times, increases network efficiency, and improves system robustness.
机译:不断需要增加光网络的吞吐量以满足互联网应用的需求。然而,正在接近标准单模光纤的非线性香农容量。同样,光网络中使用的几乎所有功率都由电子路由器使用。解决所有问题的一种可能的解决方案是使用光分组交换。光学分组交换使用快速切换的可调谐激光器,该激光器可以将波长更改为几ns级,以动态改变网络中的波长分配,从而在没有电子路由器的情况下实现网络中的路由。另外,快速超波长分配减少了等待时间,从而更好地利用了网络资源。 ud ud但是,波长切换后可调谐激光器的频率动态会增加成功传输数据包所需的等待时间。在本文中,在波长切换事件之后,可调谐激光/发射器的频率和相位动态特性首先使用一种新技术进行了准确表征。使用双差分解码可以减轻频率动态特性对相干光通信信号传输的影响,这是这项工作中提出的一种新方法,可用于光分组交换网络。此技术减少了波长切换事件后成功传输数据所需的等待时间,从而提高了整体网络效率和吞吐量。另外,这项工作提出并演示了使用最小均方算法来克服这些网络中存在的极化解复用问题,这也减少了等待时间,提高了网络效率,并提高了系统的鲁棒性。

著录项

  • 作者

    Walsh Anthony John;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 en
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