Routing, spectrum and core assignment for space division multiplexing elastic optical networks

H. Tode, Y. Hirota
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引用次数: 69

Abstract

Elastic Optical Network (EON) is expected as one of future networks in terms of spectrum flexibility. While Routing and Wavelength Assignment (RWA) problem is one of the key issues in traditional Wavelength Division Multiplexing (WDM) networks, Routing and Spectrum Assignment (RSA) problem has much impact on network performance in EONs. On the other hand, Data-Center (DC) traffic and/or mobile back-haul traffic keep on increasing. To deal with such forthcoming huge capacity of applications, Space Division Multiplexing (SDM) technologies, such as Multi-Core Fiber (MCF) and few-mode fiber, are intensively researched. From network perspective, this paper focuses on Routing, Spectrum and Core Assignment (RSCA) problem for future SDM-EON. Introducing multi-core fibers makes RSA problem more complex because fiber-core dimension is newly expanded. In addition, physical impairment caused by MCF must be taken into account. In this paper, first, the target RSCA problem is divided into the routing and SCA problems, and K-shortest path based pre-computation method is introduced as the routing solution. Next, according to whether MCF has inter-core crosstalk or not, we propose SCA methods with crosstalk awareness and with prioritized area concept, respectively. Finally, the paper evaluates the effectiveness of the proposed algorithms compared with representative ones.
空分复用弹性光网络的路由、频谱和核心分配
弹性光网络(EON)在频谱灵活性方面被认为是未来网络的发展方向之一。路由与波长分配(RWA)问题是传统波分复用(WDM)网络中的关键问题之一,而路由与频谱分配(RSA)问题对EONs网络的性能影响很大。另一方面,数据中心(DC)流量和/或移动回程流量不断增加。为了应对即将到来的大容量应用,多芯光纤(MCF)和少模光纤等空分复用(SDM)技术得到了广泛的研究。从网络角度出发,重点研究了未来SDM-EON的路由、频谱和核心分配(RSCA)问题。多芯光纤的引入使RSA问题变得更加复杂,因为光纤芯的维度得到了新的扩展。此外,必须考虑到MCF引起的身体损伤。本文首先将目标RSCA问题分为路由问题和SCA问题,并引入基于k最短路径的预计算方法作为路由解决方案。其次,根据MCF是否存在核间串扰,我们分别提出了具有串扰感知和优先区域概念的SCA方法。最后,将所提算法与代表性算法进行了比较,评价了算法的有效性。
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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