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首页> 外文期刊>IEEE Journal on Selected Areas in Communications >Cross-layer adaptive routing and wavelength assignment in all-optical networks
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Cross-layer adaptive routing and wavelength assignment in all-optical networks

机译:全光网络中的跨层自适应路由和波长分配

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摘要

In WDM all-optical networks where electrical regeneration is not available, physical impairments due to propagation in the fibers, amplifier noise, and leaks between channels and in the switches cannot be removed at the physical layer. These effects cause calls, especially between physically distant nodes, to be rejected because they cannot meet minimum Quality of Transmission (QoT) requirements, as measured by signal bit-error rates. It is possible to mitigate physical layer effects at the network layer using appropriate Routing and Wavelength Assignment (RWA) algorithms. We present new RWA algorithms which account for physical impairments in their design and increase QoT and fairness among users without sacrificing low blocking probabilities in metropolitan-sized networks. We also present RWA algorithms that can sharply decrease blocking probabilities in regional-sized networks using optional channel coding. All algorithms are evaluated through simulation in realistic scenarios and shown to successfully mitigate crosstalk effects and to perform better in terms of QoT and network access fairness than traditional algorithms.
机译:在无法进行电气再生的WDM全光网络中,由于光纤中的传播,放大器噪声以及通道之间和交换机中的泄漏引起的物理损伤无法在物理层上消除。这些影响导致呼叫被拒绝,尤其是在物理距离较远的节点之间的呼叫,因为它们不能满足最低传输质量(QoT)要求(以信号误码率衡量)。使用适当的路由和波长分配(RWA)算法可以减轻网络层的物理层影响。我们提出了新的RWA算法,该算法解决了设计中的物理缺陷,并提高了用户之间的QoT和公平性,同时又不牺牲城域网中的低阻塞概率。我们还提出了RWA算法,该算法可以使用可选的信道编码来大大降低区域规模网络中的阻塞概率。所有算法均通过在实际场景中的仿真进行评估,结果表明,与传统算法相比,该算法可成功减轻串扰影响,并在QoT和网络访问公平性方面表现更好。

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