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Network Layer Support for Gigabit TCP Flows in Wireless Mesh Networks

机译:无线网状网络中对千兆位TCP流的网络层支持

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摘要

Next generation wireless networks (WMNs) are designed to provide better performance than other existing personal, local, and metropolitan wireless networks, such as Wireless Local Area Networks and WiFi. In WMNs, each link has different amount of available bandwidth, and the bandwidth fluctuates dynamically based on the wireless environment. When the available bandwidth fluctuates, Transmission Control Protocol (TCP) flows experience packet losses, packet re-ordering, and timeouts, resulting in low end-to-end throughput. To alleviate the problem of low TCP throughput, we propose a (SRNC) scheme. In SRNC scheme, each gateway node forwards packets after network coding. Each intermediate node also adaptively uses network coding before forwarding the packets to the outgoing links. Each mesh access node decodes the network coded packets before forwarding them to the destinations. The key feature of SRNC is that each node adapts its network coding rate based on the available bandwidth on the outgoing links, such that the access nodes can decode the packets with higher probability without significantly affecting the cross-traffic. Effectiveness of the proposed scheme is evaluated using simulation. The simulation results show that the proposed scheme uses the available bandwidth on each link efficiently and it significantly improves end-to-end throughput of TCP flows.
机译:下一代无线网络(WMN)旨在提供比其他现有的个人,本地和城市无线网络(如无线局域网和WiFi)更好的性能。在WMN中,每个链路具有不同数量的可用带宽,并且带宽会根据无线环境而动态波动。当可用带宽波动时,传输控制协议(TCP)流会遇到数据包丢失,数据包重新排序和超时的情况,从而导致低的端到端吞吐量。为了缓解TCP吞吐量低的问题,我们提出了一种(SRNC)方案。在SRNC方案中,每个网关节点在进行网络编码后转发数据包。每个中间节点还在将数据包转发到传出链路之前自适应地使用网络编码。每个网状接入节点在将网络编码的数据包转发到目的地之前先对其进行解码。 SRNC的关键特征是每个节点都基于传出链路上的可用带宽来调整其网络编码率,从而使接入节点能够以较高的概率对数据包进行解码,而不会显着影响交叉流量。通过仿真评估了所提方案的有效性。仿真结果表明,该方案有效地利用了每个链路上的可用带宽,并显着提高了TCP流的端到端吞吐量。

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