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A RWA performance comparison for hybrid optical networks combining circuit and multi-wavelength packet switching

机译:电路与多波长分组交换相结合的混合光网络的RWA性能比较

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This paper compares several routing and wavelength assignment algorithms for a hybrid optical network architecture combining optical circuit switching (OCS) and multi-wavelength optical packet switching (MW-OPS). In this network, due to the fact that wavelength resources in a fiber are shared between OCS and MW-OPS and in MW-OPS each multi-wavelength optical packet must be encoded into continuous, free wavelengths along the route, the choice of routing and wavelength assignment (RWA) algorithms critically influences the performance of wavelength utilization in the network. We compare several RWA algorithms in the network by simulation. As a result, the MML-FF RWA algorithm which combines the first-fit (FF) wavelength assignment algorithm and the maximum matched lambda (MML) routing algorithm outperforms the others in both wavelength utilization and load-balancing. Furthermore, the number of TWCs to achieve the optimum performance in the network is at most 30 % of the product of the number of ports in a core node and that of wavelengths in a fiber.
机译:本文比较了将光电路交换(OCS)和多波长光分组交换(MW-OPS)相结合的混合光网络体系结构的几种路由和波长分配算法。在该网络中,由于光纤中的波长资源在OCS和MW-OPS之间共享,并且在MW-OPS中,每个多波长光分组必须沿路径编码为连续的自由波长,并选择路径波长分配(RWA)算法严重影响网络中波长利用的性能。通过仿真,我们比较了网络中的几种RWA算法。结果,结合了首次拟合(FF)波长分配算法和最大匹配λ(MML)路由算法的MML-FF RWA算法在波长利用率和负载平衡方面均优于其他算法。此外,在网络中实现最佳性能的TWC的数量最多是核心节点中端口数量和光纤波长中乘积的30%。

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