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首页> 外文期刊>Journal of Lightwave Technology >Hybrid Architecture and Integrated Routing in a Scalable Optical–Wireless Access Network
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Hybrid Architecture and Integrated Routing in a Scalable Optical–Wireless Access Network

机译:可扩展的光无线接入网络中的混合体系结构和集成路由

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We propose a hybrid optical–wireless access network that consists of reconfigurable optical backhaul and wireless mesh networks (WMNs). The complementary characteristics of wireless and optical networks are combined to provide a broadband and ubiquitous last-mile connection. Wireless mesh routers are deployed to penetrate the vicinity of end users for a flexible and ubiquitous connection. It eliminates massive and geographically scattered deployment of physical infrastructure to reach the end users. The broadband optical backhaul consists of optical ring and multiple tree networks, connecting the central hub and WMNs. The ends of the optical tree networks connect to the wireless gateway routers of WMNs. A hybrid time-division-multiplexing (TDM)/wavelength-division-multiplexing (WDM) optical backhaul is realized by wavelength-multiplexing multiple TDM-passive-optical-network streams. This hybrid architecture provides graceful scalability, cost effectiveness, and bandwidth efficiency. To adapt to a change of the overall demand in different districts, reconfigurability is implemented in the optical backhaul utilizing tunable optical transceivers. An experimental test bed is implemented to evaluate the reconfigurable scheme. Given the synergy of the optical backhaul and WMNs, we propose an integrated-routing algorithm to achieve load balancing on this hybrid architecture. The simulation using NS2 shows an approximately 25% throughput improvement with load balancing.
机译:我们提出了一种混合的光无线接入网络,该网络由可重新配置的光回程和无线网状网络(WMN)组成。无线和光网络的互补特性相结合,以提供宽带和无所不在的最后一英里连接。无线网状路由器被部署为渗透到最终用户附近,以实现灵活,无所不在的连接。它消除了物理基础设施的大规模和分散地部署,以覆盖最终用户。宽带光回程由光环和多个树状网络组成,连接中央集线器和WMN。光树网络的末端连接到WMN的无线网关路由器。混合时分多路复用(TDM)/波分多路复用(WDM)光回程是通过对多个TDM无源光网络流进行波长复用来实现的。这种混合体系结构提供了适度的可伸缩性,成本效益和带宽效率。为了适应不同地区整体需求的变化,在可回传光收发器中使用光回程实现了可重新配置性。实现了一个实验测试台来评估可重构方案。考虑到光回程和WMN的协同作用,我们提出了一种集成路由算法来在这种混合架构上实现负载平衡。使用NS2进行的仿真显示,在负载平衡的情况下,吞吐量提高了约25%。

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