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Topology Analysis of the Access/Aggregation Network Structure in Future Optical Access Networks

机译:未来光学接入网络中访问/聚合网络结构的拓扑分析

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Increasing demand for higher bitrates in access networks requires fiber deployment closer to the customer as bitrates in copper based access networks are strictly limited essentially by the length of the copper cables. Besides enabling higher access bitrates optical access network technologies will also enable a change in the structure of the access/aggregation network segment due to the superior transmission characteristics of optical fibers: Larger service areas and a decreased overall number of access sites are feasible. Concentration of active network equipment in a fewer number of access site is expected to help to reduce the total cost of ownership of the whole network due to concentration effects and OpEx savings. In this paper we present results of a topology related network study investigating feasible network structures in next generation optical access networks. Starting from the structure of copper based access networks in Germany, traditional service areas are clustered to larger entities. We distinguish between different levels of access network concentration leading to various scenarios relying on a different number of required metro access nodes. A exemplary set of reference service areas is identified representing the majority of all service areas within a certain category and typical characteristics of the reference service areas are given. From the results of the topological analysis some requirements with respect to next generation optical access systems are derived.
机译:随着基于铜的接入网络的比特率基本上被铜缆的长度严格地限制,对访问网络中更高比特率的需求越来越需要更接近客户的光纤部署。除了实现更高的接入比特率之前,光学接入网络技术还将在光纤的卓越传输特性导致的访问/聚合网段的结构中实现改变:更大的服务区域和降低的接入站点的总数是可行的。预计由于集中效应和OPEX储蓄,有助于降低整个网络的总拥有成本的有效网络设备的集中。在本文中,我们在下一代光学接入网络中呈现研究可行网络结构的拓扑相关网络研究的结果。从德国铜基接入网络的结构开始,传统的服务区域集中于更大的实体。我们区分不同级别的访问网络集中级别,导致各种场景依赖于不同数量的必需的地铁接入节点。识别示例的一组参考服务区域,其表示在给出某个类别内的所有服务区域的大多数和参考服务区域的典型特征。从拓扑分析结果,导出了关于下一代光学访问系统的一些要求。

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