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用于距离自适应弹性光网络的基于保护光路的无中断频谱碎片整理

Protection lightpath-based hitless spectrum defragmentation for distance adaptive elastic optical networks.

作者信息

Wang Chao, Shen Gangxiang, Peng Limei

出版信息

Opt Express. 2016 Mar 7;24(5):4497-4511. doi: 10.1364/OE.24.004497.

Abstract

Spectrum defragmentation can improve spectrum utilization for an elastic optical network (EON). However, most of the existing studies have focused on defragmentation for working lightpaths, which may affect upper-layer network services. This paper considers protection lightpath-based hitless spectrum defragmentation for distance adaptive elastic optical networks. Without affecting working lightpaths, but defragmenting spectra for protection lightpaths, we expect to achieve truly hitless spectrum defragmentation for an EON. Shared backup path protection (SBPP) technique is employed as a representative network protection technique to evaluate the benefit of the proposed defragmentation scheme. To smooth the network spectra for future arriving lightpath requests so as to reduce bandwidth blocking probability (BBP), we propose two defragmentation triggering mechanisms, namely, defragmentation upon blocking (BTD) and batch defragmentation (BD). For each of them, we also propose two spectrum defragmentation algorithms, namely, defragmentation with sequentially releasing and re-establishing protection lightpaths (SR-D) and defragmentation with jointly releasing and re-establishing protection lightpaths (JR-D). The performances of these proposed algorithms are evaluated from perspectives of BBP and average number of reconfigurations per successfully established lightpath service (ANR). Simulation results show that compared to the case without defragmentation, the proposed scheme is effective to reduce BBP, which trades off with ANR.

摘要

频谱碎片整理可以提高弹性光网络(EON)的频谱利用率。然而,现有的大多数研究都集中在工作光路的碎片整理上,这可能会影响上层网络服务。本文考虑了基于保护光路的无冲击频谱碎片整理,用于距离自适应弹性光网络。在不影响工作光路的情况下,对保护光路的频谱进行碎片整理,我们期望为弹性光网络实现真正的无冲击频谱碎片整理。采用共享备份路径保护(SBPP)技术作为一种代表性的网络保护技术,来评估所提出的碎片整理方案的效益。为了平滑网络频谱以应对未来到达的光路请求,从而降低带宽阻塞概率(BBP),我们提出了两种碎片整理触发机制,即阻塞时碎片整理(BTD)和批量碎片整理(BD)。对于每种机制,我们还提出了两种频谱碎片整理算法,即顺序释放和重新建立保护光路的碎片整理(SR-D)以及联合释放和重新建立保护光路的碎片整理(JR-D)。从带宽阻塞概率和每个成功建立的光路服务的平均重新配置次数(ANR)的角度对这些提出的算法的性能进行了评估。仿真结果表明,与不进行碎片整理的情况相比,所提出的方案在降低带宽阻塞概率方面是有效的,这是以平均重新配置次数为代价的。

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