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Hierarchical Routing and Resource Assignment in Spatial Channel Networks (SCNs): Oriented Toward the Massive SDM Era

机译:空间通道网络中的分层路由和资源分配(SCNS):面向大规模的SDM时代

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In the past few decades, the architecture of optical networks has undergone significant evolution, from the earliest wavelength-division multiplexing (WDM) optical networks to elastic optical networks (EONs) and later to space-division multiplexing (SDM) EONs, to address the continuous growth of Internet traffic. By 2024, Pbps-level optical networks are expected, far exceeding the capacity limit of single-mode fibers. The massive SDM era is on the horizon. In this context, a newly designed architecture for optical networks called the spatial channel network (SCN) architecture, which achieves high cost efficiency by means of practical hierarchical optical cross-connects, has recently been proposed. However, the evolution of optical network architectures will simultaneously present challenges related to network optimization. For instance, with the evolution from WDM optical networks to EONs, the kernel network optimization problem was transformed from the routing and wavelength assignment (RWA) problem into the routing and spectrum assignment (RSA) problem due to the additionally introduced constraint of spectrum contiguity. Similarly, specially designed algorithms are also expected to be essential for addressing the network optimization problem in SCNs. In this paper, we define this new problem as the routing, spatial channel, and spectrum assignment (RSCSA) problem. We propose an integer linear programming (ILP) model and a heuristic algorithm to solve the RSCSA problem. We examine the performance of the proposed approaches via simulation experiments. The results show that both proposed approaches are effective in finding the optimal solutions or solutions close to the lower bounds. To the best of our knowledge, this is the first work to focus on the network optimization problem in SCNs.
机译:在过去的几十年中,光网络的架构已经经历了显着的演化,从最早的波分复用(WDM)光网络到弹性光网络(EONS)和后面的空间多路复用(SDM)EON,以解决互联网交通的持续增长。到2024,预期PBPS级光网络远远超过单模纤维的容量限制。大规模的SDM时代在地平线上。在这种情况下,最近提出了通过最近提出通过实用层级光学交叉实现的空间通道网络(SCN)架构的新设计的光网络架构。然而,光网络架构的演变将同时存在与网络优化相关的挑战。例如,随着从WDM光网络到EON的演变,由于另外引入的频谱邻接的约束,从路由和波长分配(RWA)问题转换到路由和频谱分配(RSA)问题中,内核网络优化问题转换为路由和频谱分配(RSA)问题。类似地,特别设计的算法也有望解决SCN中的网络优化问题是必不可少的。在本文中,我们将此新问题定义为路由,空间通道和频谱分配(RSCSA)问题。我们提出了一个整数线性编程(ILP)模型和启发式算法来解决RSCSA问题。我们通过模拟实验检查提出方法的性能。结果表明,两个提出的方法都有效地找到靠近下限的最佳解决方案或解决方案。据我们所知,这是第一个专注于SCNS网络优化问题的工作。

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