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Software Defined Wireless Mesh Network Flat Distribution Control Plane

机译:软件定义的无线网状网络平面分布控制平面

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Wireless Mesh Networks (WMNs), have a potential offering relatively stable Internet broadband access. The rapid development and growth of WMNs attract ISPs to support users’ coverage anywhere anytime. To achieve this goal network architecture must be addressed carefully. Software Defined Networking (SDN) proposes new network architecture for wired and wireless networks. Software Defined Wireless Networking (SDWN) has a great potential to increase efficiency, ease the complexity of control and management, and accelerate technology innovation rate of wireless networking. An SDN controller is the core component of an SDN network. It needs to have updated reports of the network status change, as in network topology and quality of service (QoS) in order to effectively configure and manage the network it controls. In this paper, we propose Flat Distributed Software Defined Wireless Mesh Network architecture where the controller aggregates entire topology discovery and monitors QoS properties of extended WMN nodes using Link Layer Discovery Protocol (LLDP) protocol, which is not possible in multi-hop ordinary architectures. The proposed architecture has been implemented on top of POX controller and Advanced Message Queuing Protocol (AMQP) protocol. The experiments were conducted in a Mininet-wifi emulator, the results present the architecture control plane consistency and two application cases: topology discovery and QoS monitoring. The current results push us to study QoS-routing for video streaming over WMN.
机译:无线网状网络(WMN)具有提供相对稳定的Internet宽带访问的潜力。 WMN的快速发展和增长吸引了ISP随时随地支持用户的覆盖范围。为了实现这一目标,必须谨慎处理网络体系结构。软件定义网络(SDN)为有线和无线网络提出了新的网络架构。软件定义无线网络(SDWN)在提高效率,减轻控制和管理的复杂性以及加快无线网络的技术创新速度方面具有巨大潜力。 SDN控制器是SDN网络的核心组件。它需要具有网络状态变化的更新报告,例如网络拓扑和服务质量(QoS),以便有效配置和管理其控制的网络。在本文中,我们提出了扁平分布式软件定义的无线网状网络体系结构,其中控制器聚合整个拓扑发现并使用链路层发现协议(LLDP)协议监视扩展WMN节点的QoS属性,这在多跳普通体系结构中是不可能的。所提出的体系结构已在POX控制器和高级消息队列协议(AMQP)协议之上实现。实验是在Mininet-wifi仿真器中进行的,结果显示了体系结构控制平面的一致性以及两个应用案例:拓扑发现和QoS监视。当前的结果促使我们研究WMN上视频流的QoS路由。

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