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A routing and wavelength assignment scheme considering full optical carrier replication in multi-carrier-distributed optical mesh networks with wavelength reuse

机译:考虑波长复用的多载波分布式光网状网络中考虑完全光载波复制的路由和波长分配方案

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This paper proposes a routing and wavelength assignment (RWA) scheme that considers full optical carrier replication to minimize the number of required wavelengths for wavelength-reusable multi-carrier-distributed (WRMD) mesh networks. Unlike the conventional wavelength division multiplexing networks where each node contains multiple laser diodes, the WRMD networks use a light source, called the multi-carrier light source, to ease the difficulty of controlling many light source devices. The optical carrier replication at any node of optical carrier or any end node of lightpath, called full optical carrier replication, improves the performance of the conventional schemes, which do not consider full optical carrier replication. This paper first formulates the RWA problem considering full optical carrier replication as an integer linear programming problem that minimizes the number of required wavelengths to satisfy the given lightpath setup requests. A heuristic RWA scheme is then proposed to solve the RWA problem in practical times. Simulation results show that our proposed heuristic RWA scheme for the WRMD network achieves a near-optimum number of wavelengths. In addition, it is able to reduce the number of required wavelengths for lightpath establishment, compared to the conventional scheme.
机译:本文提出了一种路由和波长分配(RWA)方案,该方案考虑了完整的光载波复制,以最大程度地减少波长可复用的多载波分布式(WRMD)网格网络所需的波长数量。与每个节点包含多个激光二极管的传统波分复用网络不同,WRMD网络使用一种称为多载波光源的光源来减轻控制许多光源设备的难度。在光载波的任何节点或光路的任何末端节点处的光载波复制,称为全光载波复制,改善了常规方案的性能,该传统方案不考虑全光载波复制。本文首先将考虑完全光载波复制的RWA问题公式化为整数线性规划问题,该问题使所需波长的数量最小化以满足给定的光路设置要求。然后提出了一种启发式的RWA方案来解决实际时期的RWA问题。仿真结果表明,我们针对WRMD网络提出的启发式RWA方案实现了近乎最佳的波长数量。另外,与传统方案相比,它能够减少光路建立所需的波长数量。

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