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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >A survivable VON embedding algorithm based on resource awareness of correlation lightpaths in elastic optical networks
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A survivable VON embedding algorithm based on resource awareness of correlation lightpaths in elastic optical networks

机译:基于资源意识的可生存的VON嵌入算法,其弹性光网络中的相关光路

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摘要

To address the problems of low spectrum utilization and high bandwidth blocking probability of virtual optical network embedding in elastic optical networks, we propose a Survivable virtual optical network Embedding algorithm based on resource awareness of correlation lightpaths (SE-RACL), which can further optimize network resource allocation compared to traditional single lightpath resource allocation algorithms. Firstly, according to the multi-dimensional attributes of nodes, the importance sorting formulas of virtual nodes and physical nodes are designed to increase the cooperation between virtual node embedding and link embedding and reduce the bandwidth consumption of link embedding. Secondly, in the spectrum allocation process of the working lightpath, the spectrum block matching degree formula is designed by combining the spectrum fragmentation degree changes and resource reductions of correlation lightpaths, which is used to optimize the network spectrum resource allocation. Finally, in order to improve the sharing degree of protection resources and the success probability of spectrum allocation under single link failure, a correlation lightpaths spectrum allocation method based on the minimum free frequency slot consumption is proposed. Simulation results show that the SE-RACL algorithm can effectively reduce the bandwidth blocking probability and enhance the spectrum utilization.
机译:针对弹性光网络中嵌入虚拟光网络频谱利用率低、带宽阻塞率高的问题,提出了一种基于相关光路资源感知的可生存虚拟光网络嵌入算法(SE-RACL),与传统的单光路资源分配算法相比,它可以进一步优化网络资源分配。首先,根据节点的多维属性,设计了虚拟节点和物理节点的重要性排序公式,以增加虚拟节点嵌入和链路嵌入之间的协作,降低链路嵌入的带宽消耗。其次,在工作光路的频谱分配过程中,结合相关光路的频谱碎片度变化和资源减少,设计了频谱块匹配度公式,用于优化网络频谱资源分配。最后,为了提高单链路故障下保护资源的共享程度和频谱分配的成功概率,提出了一种基于最小空闲时隙消耗的相关光路频谱分配方法。仿真结果表明,SE-RACL算法能有效降低带宽阻塞概率,提高频谱利用率。

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