Fragmentation-aware Routing, Space, and Spectrum Assignment using Ant Colony Optimization

L. A. D. Lima, G. S. Pavani
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Abstract

Space division multiplexing (SDM) allows for capacity expansion in the Elastic Optical Network (EON) by providing different spatial paths in the same link for the lightpaths. Thus, in addition to the Routing and Spectrum Assignment (RSA) problem, the Space sub-problem must be tackled during the allocation of resources in an SDM-EON environment. In this work, we propose a fully distributed provisioning algorithm based on the Ant Colony optimization (ACO) metaheuristics with a crankback mechanism to solve the Routing, Space, and Spectrum Assignment (RSSA) problem. The proposed algorithm can mitigate the blocking by taking into consideration the fragmentation caused by the dynamic establishment and release of lightpaths. The obtained simulation results demonstrate the effectiveness of the proposed approach when compared to fragmentation-aware algorithms that rely on the OSPF-TE protocol to gather the network state information while maintaining much lower levels of control overhead.
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使用蚁群优化的碎片感知路由,空间和频谱分配
空分复用(SDM)通过在同一链路上为光路提供不同的空间路径,从而允许弹性光网络(EON)的容量扩展。因此,在SDM-EON环境中,除了路由和频谱分配(RSA)问题之外,还必须解决空间子问题。在这项工作中,我们提出了一种基于蚁群优化(ACO)元启发式的全分布式供应算法,并采用曲back机制来解决路由、空间和频谱分配(RSSA)问题。该算法考虑了光路动态建立和释放所引起的碎片化,减轻了阻塞。仿真结果表明,与依赖OSPF-TE协议收集网络状态信息的碎片感知算法相比,该方法的有效性大大降低了控制开销。
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