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End-to-end throughput and delay analysis of WiFi multi-hop network with deterministic offered load

机译:确定性提供负载的WiFi多跳网络的端到端吞吐量和延迟分析

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In a wireless multi-hop or mesh network, stations which are connected to Mesh Access Point (MAP) lesser hops from the gateway are expected to enjoy higher throughput and lower delay than stations connected to the MAP further hops away. To solve this issue, we introduce a technique to determine network layer queue size limit of ingress radio interfaces in the multi-radio MAPs. The intention is to partially control the transmit probability of forwarded packets during network congestion. End-to-end throughput and delay with four types of queue configurations were measured in an experimental testbed. The results show that a delay variance reduction of 38× between the first hop and the subsequent hops can be achieved using the proposed technique with a minimal drop (<;0.05Mbps) in average throughput.
机译:在无线多跳或网状网络中,与连接到MAP的站点相比,从网关经过较小跳数的站点到网关的跳数较小,而与之相连的站点跳闸的延迟较小。为了解决此问题,我们引入了一种确定多无线电MAP中入口无线接口的网络层队列大小限制的技术。目的是在网络拥塞期间部分控制转发数据包的传输概率。在实验测试平台上测量了四种队列配置的端到端吞吐量和延迟。结果表明,使用提出的技术可以使第一跳和后续跳之间的延迟方差减少38倍,平均吞吐量的下降最小(<; 0.05Mbps)。

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