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Topology forming and optimization framework for heterogeneous wireless back-haul networks supporting unidirectional technologies

机译:支持单向技术的异构无线回程网络的拓扑形成和优化框架

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Wireless operators, in developed or emerging regions, must support triple-play service offerings as demanded by the market or mandated by regulatory bodies through so-called Universal Service Obligations (USOs). Since individual operators might face different constraints such as available spectrum licenses, technologies, cost structures or a low energy footprint, the EU FP7 CARrier grade wireless MEsh Network (CARMEN) project has developed a carrier-grade heterogeneous multi-radio back-haul architecture which may be deployed to extend, complement or even replace traditional operator equipment. To support offloading of live triple-play content to broadcast-optimized, e.g., DVB-T, overlay cells, this heterogeneous wireless back-haul architecture integrates unidirectional broadcast technologies. In order to manage the physical and logical resources of such a network, a centralized coordinator approach has been chosen, where no routing state is kept at plain WiBACK Nodes (WNs) which merely store QoS-aware MPLS forwarding state. In this paper we present our Unidirectional Technology (UDT)-aware design of the centralized Topology Management Function (TMF), which provides a framework for different topology and spectrum allocation optimization strategies and algorithms to be implemented. Following the validation of the design, we present evaluation results using a hybrid local/centralized topology optimizer showing that our TMF design supports the reliable forming of optimized topologies as well as the timely recovery from node failures.
机译:发达或新兴地区的无线运营商必须根据市场需求或监管机构通过所谓的通用服务义务(USO)来支持三重播放服务。由于各个运营商可能面临不同的限制,例如可用的频谱许可,技术,成本结构或低能耗,因此欧盟FP7运营商级无线MEsh网络(CARMEN)项目已经开发出了运营商级异构多无线电回程架构,可以用来扩展,补充甚至替代传统的操作员设备。为了支持将实时三重播放内容卸载到广播优化的DVB-T覆盖小区,这种异构无线回程架构集成了单向广播技术。为了管理这样的网络的物理和逻辑资源,已经选择了集中式协调器方法,其中没有路由状态保持在仅存储支持QoS的MPLS转发状态的纯WiBACK节点(WN)。在本文中,我们介绍了集中式拓扑管理功能(TMF)的单向技术(UDT)感知设计,该设计为要实现的不同拓扑和频谱分配优化策略和算法提供了框架。在对设计进行验证之后,我们使用混合的本地/集中式拓扑优化器提供了评估结果,表明我们的TMF设计支持可靠地形成优化拓扑并及时从节点故障中恢复。

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