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An efficient optimization scheme for WDM/TDM PON network planning

机译:WDM / TDM PON网络规划的有效优化方案

摘要

With the growing popularity of bandwidth demanding services such as HDTV, VoD, and video conferencing applications, there is an increasing demand on broadband access. To meet this demand, the access networks are evolving from the traditional DSL (xDSL more recently) and cable techniques to a new generation of fiber-based access techniques. While EPONs and GPONs have been the most studied passive optical access networks (PONs), WDM-PON is now clearly seen as the next generation trend with an hybrid set of switching equipment.ududWe propose here an original optimization scheme for the deployment of greenfield PON networks where we minimize the overall deployment cost. Given the geographical location of ONUs and their incoming/outgoing traffic demands, the newly proposed scheme optimizes the placement of splitters/AWGs in a PON and the link dimensioning in order to provision the overall demand.ududThe optimization scheme proceeds in three phases. In the first phase, we generate several potential equipment hierarchies, where each equipment hierarchy is associated with an ONU partition such that a switching equipment is associated with each cluster, each ONU belongs to a single cluster, and the splitting ratio of the equipment corresponds to the number of ONUs in the cluster. In the second phase, for each equipment hierarchy, we make use of a column generation (CG) mathematical model to select the type and location of the switching equipment that leads to the minimum cost multi-stage equipment topology which accommodates all the traffic demand. The third phase selects the best hierarchy among all the generated and dimensioned hierarchies.ududThe optimization model encompasses the particular cases where all switching equipment are either splitters and AWGs, and outputs the location of the switching equipment together with the dimensioning of the PON network. We performed numerical experiments on various data sets in order to evaluate the performance of the optimization model, and to analyze the type of equipment hierarchies which are generated depending on the traffic and the location of the ONUs.ud
机译:随着诸如HDTV,VoD和视频会议应用之类的带宽需求服务的日益普及,对宽带接入的需求也越来越大。为了满足这一需求,接入网络正在从传统的DSL(最近是xDSL)和电缆技术发展到新一代的基于光纤的接入技术。虽然EPON和GPON已经成为研究最多的无源光接入网(PON),但现在WDM-PON显然已被视为具有混合交换设备集的下一代趋势。 ud ud我们在此提出了用于部署的原始优化方案新建PON网络,使我们的总体部署成本降至最低。给定ONU的地理位置及其传入/传出的流量需求,新提出的方案优化了PON中分离器/ AWG的位置以及链路尺寸,以提供总体需求。 ud ud优化方案分三个阶段进行。在第一阶段,我们生成几个潜在的设备层次结构,其中每个设备层次结构都与一个ONU分区相关联,从而使交换设备与每个群集相关联,每个ONU属于单个群集,并且设备的拆分率对应于集群中ONU的数量。在第二阶段中,对于每个设备层次结构,我们利用列生成(CG)数学模型来选择交换设备的类型和位置,从而形成可满足所有流量需求的最低成本的多级设备拓扑。第三阶段在所有生成的层次结构和尺寸层次结构中选择最佳层次结构。 ud ud优化模型包含所有交换设备均为分离器和AWG的特殊情况,并输出交换设备的位置以及PON的尺寸网络。我们对各种数据集进行了数值实验,以评估优化模型的性能,并分析根据业务量和ONU的位置生成的设备层次结构的类型。 ud

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