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Estimating the channel capacity of multi-hop IEEE 802.11 wireless networks

机译:估计多跳IEEE 802.11无线网络的信道容量

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In IEEE 802.11 wireless networks, the residual capacity of the wireless links should be accurately estimated to realize advanced network services such as flow admission control or load balancing. In this paper, we propose an algorithm that estimates the packet delivery failure probability by collecting transmission statistics from nearby nodes, and by using a basic collision detection mechanism. This probability is then used in an analytical model to calculate the maximum allowable traffic needed to reach the saturation condition. We show by simulations that estimation error is within 0.5-5.0%, which is significantly lower than the best performance of prior estimation methods. We also demonstrate that the flow admission control is successfully achieved in a realistic wireless network scenario by the help of accurate link residual bandwidth estimation, where the unsatisfied traffic demand remain bounded at a negligibly low level. A routing algorithm that finds max-min residual bandwidth path between source and destination nodes is also implemented, and simulation results show that the network throughput achieved by this algorithm significantly exceeds that of other popular mesh routing protocols. Finally, we provide test results from the real implementation of our algorithm on 802.11 wireless equipment, which are consistent with the simulations.
机译:在IEEE 802.11无线网络中,应准确估计无线链路的剩余容量,以实现高级网络服务,例如流接纳控制或负载平衡。在本文中,我们提出了一种算法,该算法通过收集附近节点的传输统计信息并使用基本的冲突检测机制来估计数据包传递失败的概率。然后,在分析模型中使用此概率来计算达到饱和条件所需的最大允许流量。通过仿真显示,估计误差在0.5-5.0%之内,这大大低于现有估计方法的最佳性能。我们还证明,借助精确的链路剩余带宽估计,在不满足实际的无线网络情况下,成功实现了流接纳控制,在这种情况下,未满足的流量需求仍保持在可以忽略的低水平。还实现了找到源节点和目标节点之间的最大-最小剩余带宽路径的路由算法,仿真结果表明,该算法实现的网络吞吐量大大超过了其他流行的网状路由协议。最后,我们提供了我们的算法在802.11无线设备上实际执行的测试结果,这些结果与仿真结果一致。

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