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A dynamic physical impairment-aware routing and wavelength assignment scheme for 10/40/100 Gbps mixed line rate wavelength switched optical networks

机译:适用于10/40/100 Gbps混合线速波长交换光网络的动态物理损伤感知路由和波长分配方案

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The growing global Internet traffic will inevitably lead to a serious upgrade of the current optical networks' capacity. Instead of upgrading the data rate of each wavelength in every fibre link across the entire optical WDM network infrastructure, it is more efficient and cost-effective to support different data rates within one fibre link (e.g., 10, 40 and 100 Gbps). This is called optical network with mixed line rates (MLR). Moving to higher than 10Gbps data rates that can be used within the same fibre requires the implementation of phase modulation schemes. Nevertheless, the co-existing OOK channels cause a critical physical impairment to the phase modulated channels, namely cross-phase modulation (XPM), that limits the network's performance. In order to mitigate this type of impairment a more sophisticated physical impairment aware routing and wavelength assignment scheme needs to be adopted. In this paper, the critical impairment for each data rate and the way it affects quality of transmission (QoT) is presented. Secondly, a novel dynamic RWA algorithm for a MLR optical network is proposed in order to address this issue. Finally, our proposed method is compared through simulations with the shortest path and minimum hop routing schemes.
机译:全球互联网流量的增长将不可避免地导致当前光网络容量的严重升级。与其升级整个光学WDM网络基础结构中每个光纤链路中每个波长的数据速率,不如在一个光纤链路中支持不同的数据速率(例如10、40和100 Gbps),效率更高,成本效益更高。这被称为具有混合线路速率(MLR)的光网络。移至可以在同一光纤中使用的高于10Gbps的数据速率,需要实施相位调制方案。但是,共存的OOK通道会给相位调制通道(即交叉相位调制(XPM))造成严重的物理损害,从而限制了网络的性能。为了减轻这种类型的损伤,需要采用更复杂的物理损伤感知路由和波长分配方案。本文介绍了每种数据速率的严重损害及其对传输质量(QoT)的影响。其次,为了解决这个问题,提出了一种新颖的用于MLR光网络的动态RWA算法。最后,通过仿真比较了我们提出的方法与最短路径和最小跳路由方案。

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