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Understanding Performance for Two 802.11 Competing Flows

机译:了解两个802.11竞争流的性能

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It is well known that 802.11 suffers from both inefficiency and unfairness in the face of competition and interference. This paper provides a detailed analysis of the impact of topology and traffic type on network performance when two flows compete with each other for airspace. We consider both TCP and UDP flows and a comprehensive set of node topologies. We vary these topologies to consider all combinations of the following four node-to-node interactions: (1) nodes unable to read or sense each other, (2) nodes able to sense each other but not able to read each other's packets and nodes able to communicate with (3) weak and with (4) strong signal. We evaluate all possible cases through simulation and show that the cases can be reduced to 9 UDP and 10 TCP 802.11g models with similar efficiency/fairness characteristics. We also validate our simulation results with extensive experiments conducted in a laboratory testbed. These more detailed models improve on previous work such as hidden-/exposed-terminal categorization and are thus better suited as a basis for adaptive techniques to improve performance in 802.11 multi-hop WLAN or Mesh Networks.
机译:众所周知,面对竞争和干扰,802.11患有效率低下和不公平。本文在两个流动互相竞争的空域竞争时,对拓扑和交通类型对网络性能的影响进行了详细分析。我们考虑TCP和UDP流程以及一整套节点拓扑集。我们改变了这些拓扑结构,以考虑以下四个节点到节点交互的所有组合:(1)无法读取或彼此读取或感测的节点,(2)能够彼此感测,但不能读取彼此的数据包和节点能够与(3)弱和(4)强信号通信。我们通过模拟评估所有可能的情况,并表明该情况可以减少到9个UDP和10 TCP 802.11g模型,具有类似的效率/公平特性。我们还通过在实验室测试的广泛实验中验证了我们的模拟结果。这些更详细的模型改善了以前的工作,如隐藏/暴露终端分类,因此更适合作为提高802.11多跳WLAN或网格网络中性能的自适应技术的基础。

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