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Routing, wavelength assignment, and spectrum allocation algorithms in transparent flexible optical WDM networks

机译:透明的灵活光WDM网络中的路由,波长分配和频谱分配算法

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Current fixed grid wavelength routed networks are limited in terms of spectral efficiency due to the rigid nature of wavelength assignment. We propose the Flexible Optical WDM (FWDM) network architecture for flexible grid optical networks in which the constraint on fixed spectrum allocation to channels is removed and network resources can be dynamically provisioned with an automated control plane. In this paper, we address the routing, wavelength assignment, and spectrum allocation problem (RWSA) in transparent FWDM networks with the objective of maximizing spectral efficiency. We formulate the RWSA problem using an Integer Linear Program (1LP). We also prove the NP-completeness of the RWSA problem, and propose three efficient polynomial time algorithms; namely the Greedy-Routing, Wavelength Assignment, and Spectrum Allocation algorithm (Greedy-RWSA); the K-Alternate Paths Routing, Wavelength Assignment, and Spectrum Allocation algorithm (KPaths-RWSA); the Shortest Path Routing, Wavelength Assignment, and Spectrum Allocation algorithm (SP-RWSA). We analyze the lower bound on the required spectrum for the given network topology and a set of requests. Simulation results demonstrate that FWDM networks are efficient in terms of spectrum, cost, and energy compared to fixed grid networks. The performance of the proposed algorithms is very close to the lower bound, and approaches to the lower bound as problem size increases.
机译:由于波长分配的刚性,当前的固定网格波长路由网络在频谱效率方面受到限制。我们提出了用于灵活网格光学网络的灵活光学WDM(FWDM)网络体系结构,该体系结构消除了对固定频谱分配给信道的限制,并且可以通过自动控制平面动态提供网络资源。在本文中,我们解决了透明FWDM网络中的路由,波长分配和频谱分配问题(RWSA),目的是最大化频谱效率。我们使用整数线性程序(1LP)公式化RWSA问题。我们还证明了RWSA问题的NP完备性,并提出了三种有效的多项式时间算法;即贪婪路由,波长分配和频谱分配算法(Greedy-RWSA); K备用路径路由,波长分配和频谱分配算法(KPaths-RWSA);最短路径路由,波长分配和频谱分配算法(SP-RWSA)。我们分析给定网络拓扑和一组请求的所需频谱的下限。仿真结果表明,与固定网格网络相比,FWDM网络在频谱,成本和能源方面均有效。所提出算法的性能非常接近下限,并且随着问题大小的增加而接近下限。

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