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Dynamic bandwidth reallocation for NG-SDH networks based on Real-time Traffic Flow Analysis

机译:基于实时业务流分析的NG-SDH网络动态带宽重新分配

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Synchronous Digital Hierarchy (SDH) networks are wildly deployed by telecom service providers (SP) around the world. Conventionally, SDH network circuits have to be designed and provisioned beforehand. Circuit profiles, including capacity, circuit route, end points…, have to be assigned before service activations. Any attempt of network re-configuration caused by network failures or traffic congestions will lead to uncertain service interruption. To further increase network availability, SPs have to overbuild their networks or to assign backup route(s) for each critical circuit, which, however, is costly and inefficient. With the introduction of technologies such as Virtual Concatenation (VCAT) and Link Capacity Adjustment Scheme (LCAS) of Next generation SDH (NG-SDH), SPs are able to adjust their SDH circuits at various bandwidth granularities and to hitlessly increase or decrease bandwidth of each circuit. In this study, we propose an effective approach to locate overbuild bandwidth, failed circuits, as well as congested circuits based on real time traffic flow data and network alarm message. Then our approach reallocates overbuilt network bandwidth in responding to network failures or traffic congestions by exploiting the benefit of VCAT and LCAS. Our simulation results show that our approach can significantly improve network availability as well as network resource utilization with minimal cost.
机译:同步数字层次结构(SDH)网络由世界各地的电信服务提供商(SP)庞大地部署。传统上,必须预先设计和配置SDH网络电路。电路配置文件,包括容量,电路路由,端点......必须在服务激活之前分配。网络故障或交通拥堵引起的网络重新配置的任何尝试都会导致不确定的服务中断。为了进一步提高网络可用性,SP必须过度挖掘其网络或为每个关键电路分配备份路由,然而,昂贵且效率低下。随着诸如下一代SDH(NG-SDH)的虚拟级联(VCAT)和链路容量调整方案(LCAS)等技术的推出,SP能够以各种带宽粒度调节其SDH电路,并无限地增加或减少带宽每个电路。在这项研究中,我们提出了一种基于实时业务流数据和网络警报消息来定位过度利用带宽,失效电路的有效方法,以及拥挤的电路。然后我们的方法通过利用VCAT和LCAS的益处来重新划分网络故障或交通拥塞时的过度覆盖网络带宽。我们的仿真结果表明,我们的方法可以显着提高网络可用性以及具有最低成本的网络资源利用率。

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