最小干扰弹性光网络的动态路由与频谱分配

Sadananda Behera, G. Das
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引用次数: 3

摘要

碎片化被认为是弹性光网络(EON)的主要瓶颈,导致频谱利用率低下。可以使用碎片整理方案来解决这个碎片问题。通常,碎片整理方案涉及复杂的程序和对现有连接的破坏。由于连接中断对于弹性网格EON的碎片整理方案至关重要,我们提出了一种新的EON路由和频谱分配(RSA)框架,该框架在动态流量场景中采用受控中断。首先,我们提出了一个混合整数线性规划(MILP)模型的样本网络,共同优化延迟带宽积,碎片和链路拥塞。然后,提出了一种适用于现实网络的启发式算法。我们在阻塞概率和碎片方面展示了我们的公式的现有研究的好处。
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Dynamic Routing and Spectrum Allocation in Elastic Optical Networks with Minimal Disruption
Fragmentation is considered as a major bottleneck for Elastic Optical Networks (EON) resulting in poor spectrum utilization. A defragmentation scheme can be employed to tackle this fragmentation issue. Often defragmentation schemes involve complex procedures and disruption to existing connections. As disruption of connections is paramount for defragmentation schemes in flex-grid EONs, we propose a novel Routing and Spectrum Allocation (RSA) framework in EON that employs controlled disruption for dynamic traffic scenarios. First, we propose a Mixed Integer Linear Program (MILP) model for a sample network which jointly optimizes delay-bandwidth product, fragmentation, and link congestion. Then, a heuristic algorithm for realistic networks is also proposed. We show the benefits of our formulation with existing studies in terms of blocking probability and fragmentation.
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