论文标题
弹性光学网络的动态多元调制方案
Dynamic Multi-Modulation Allocation Scheme for Elastic Optical Networks
论文作者
论文摘要
为了应对最近的互联网流量迅速增加,需要进行传输技术来有效利用光纤频谱,同时提供网络带宽的灵活性。为了应对这些挑战,弹性光网络(EON)的出现带来了光学网络运行中的新概念,从而提高了下一代核心网络的灵活性和效率。在EON中,通常通过以频谱效率的方式将带宽可变的光通道分配带宽变量的光通道来支持交通需求。弹性光路线网络需要路由,调制级别和频谱分配(RMLSA),以有效地将光谱资源分配给光路径。为了解决RMLSA问题,最近提出了调制方案方法,以允许使用任何路由和频谱分配(RSA)算法来解决RMLSA问题。在本文中,我们提出了一种新的调制方案,该方案可以通过多个啤酒花中的动态多模块分配来实现流量的路由,以实现阻止性能的改善。数值结果表明,所提出的自适应调制方案可在不足的网络方案中降低带宽最多两个数量级的带宽阻断,而具有较高负载的86%,与文献方案相比,在频谱节省中起着重要作用。
In order to deal with the recent rapid increase in Internet traffic, a transmission technology is required to enable the efficient use of the optical fiber spectrum while offering flexibility in network bandwidth. To meet these challenges, the emergence of Elastic Optical Networks (EON) has brought new conceptions in the operation of optical networks, improving flexibility and efficiency for the next generation core networks. In EON, traffic demands are typically supported by allocating bandwidth-variable optical channels with heterogeneous modulation formats in a spectral-efficient manner. Elastic optical path networks require the routing, modulation level, and spectrum allocation (RMLSA) to efficiently allocate optical spectrum resources to optical paths. To address the RMLSA problem, Modulation Scheme approaches have recently been proposed to allow the use of any routing and spectrum assignment (RSA) algorithm to solve the RMLSA problem. In this paper, we propose a new Modulation Scheme that enables the routing of traffic through dynamic multi-modulation allocation in multiple hops to achieve blocking performance improvement. Numerical results demonstrate that the proposed adaptive modulation scheme achieves a reduction in bandwidth blocking of up to two orders of magnitude in an underloaded network scenario, and 86% with higher loads, playing an important role in spectrum savings compared with the literature schemes.