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A Capacity-aware and Multipath-supported Traffic Control Framework in Wireless Mesh Networks

机译:无线网状网络中的容量感知和多径支持的流量控制框架

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Wireless mesh networks (WMNs) bring the convenience for daily access and infrastructure construction. To improve the throughput of WMN, more than one Internet gateway can be deployed to a WMN and the network throughput can be improved via well deployment of Internet gateways. Although the route redirection and the dynamic routing metrics can be used to improve the performance of WMNs, more available network bandwidth will be consumed for control message exchanging. In this paper, we proposed a capacity-aware and multipara supported traffic control framework in wireless mesh networks. The proposed traffic control framework can be used to dispatch the data traffic in multipath manner and improve the utilization of wireless links and forwarding latency. A multi-level queue framework is proposed to classify traffic and monitor capacity of the links and Internet gateways without any message exchanging. Our traffic control strategy consists of two phases to automatically adapt the utilization of the links and the Internet gateways. In the first phase, the incoming packets are dispatched to the lower level queues according to the capacity of Internet gateways. In the second phase, the packets are dispatched to the related links. Both of the phases are based on the local minimization of the forwarding latency. Therefore, the proposed architecture can control the forwarding latency with an approximate rninimum delay time.
机译:无线网状网络(WMNS)为日常访问和基础设施建设带来便利性。为了提高WMN的吞吐量,可以将多个互联网网关部署到WMN,并且可以通过井部署Internet网关来改进网络吞吐量。虽然可以使用路由重定向和动态路由度量来提高WMN的性能,但是将消耗更多可用的网络带宽以进行控制消息交换。在本文中,我们提出了一种在无线网状网络中的容量感知和多原体支持的流量控制框架。所提出的流量控制框架可用于在多路径方式中分配数据流量,并提高无线链路的利用率和转发延迟。建议多级队列框架对链接和Internet网关的流量和监视容量进行分类,而无需任何消息交换。我们的流量控制策略包括两个阶段,以自动适应链路和互联网网关的利用率。在第一阶段,输入分组根据因特网网关的容量向下级队列发送到较低级别队列。在第二阶段,将数据包分派给相关链接。两个阶段都基于转发延迟的局部最小化。因此,所提出的架构可以控制具有近似RniNimum延迟时间的转发延迟。

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