A novel lightpath rerouting algorithm for dynamic traffic with transmission impairments consideration in WDM all-optical networks

N. Amdouni, M. Koubàa, T. Aguili
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引用次数: 5

Abstract

In this paper, we propose a novel lightpath rerouting algorithm to optimize network resources allocation in WDM all-optical networks in order to set up an incoming lightpath demand to be blocked for lack of resources or due to the absence of a suitable path and a suitable wavelength that meet the minimum Quality of Transmission (QoT) requirements. Indeed, in such networks, transmitted optical signal has to traverse crossconnect switches, fiber segments and optical amplifiers. Thus, while propagating through the network, the signal may degrade in quality as it encounters crosstalk at the cross-connect switches and collects amplified spontaneous emission noise at the optical amplifiers. Since these impairments continue to degrade the signal quality as it progresses toward its destination, the received Bit Error Rate (BER) at the destination node might become unacceptably high. Rerouting aims at reassigning the wavelength and/or the path of one or several established connections in order to free enough wavelengths to satisfy the incoming demand. Rerouting refers implicitly to dynamic traffic. Simulation results show that our algorithm improves the rejection ratio and is less CPU time consuming than rerouting algorithms previously presented in the literature.
WDM全光网络中考虑传输损伤的动态业务光路重路由算法
本文提出了一种新的光路重路由算法,用于优化WDM全光网络中的网络资源分配,以便在缺乏资源或缺乏满足最低传输质量(QoT)要求的合适路径和合适波长时,建立一个被阻塞的入射光路需求。事实上,在这样的网络中,传输的光信号必须通过交叉连接交换机、光纤段和光放大器。因此,当信号在网络中传播时,由于在交叉连接开关处遇到串扰并在光放大器处收集放大的自发发射噪声,信号的质量可能会下降。由于这些损伤在信号向目的地传输的过程中会继续降低信号质量,因此目标节点接收到的误码率(BER)可能会变得高得令人无法接受。重路由的目的是重新分配波长和/或路径的一个或几个已建立的连接,以释放足够的波长,以满足传入的需求。重路由隐含地指动态流量。仿真结果表明,与文献中已有的重路由算法相比,我们的算法提高了拒绝率,并且消耗的CPU时间更少。
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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