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Performance Analysis of Burst Transmission Mechanism for IEEE 802.11-Based Multi-Hop Wireless LANs

机译:基于IEEE 802.11的多跳无线LAN突发传输机制的性能分析

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摘要

IEEE 802.11-based multihop wireless networks have attracted considerable attention for next-generation networks since it can extend the service coverage area without difficulty. However, it is well known that the effective end-to-end throughput (E2ET) degrades due to the overhead caused by the distributed coordination function (DCF) scheme of IEEE 802.11 MAC protocol. To improve this issue, the transmission opportunity (TXOP) mechanism is defined in the IEEE 802.11e standard, with which a wireless node can transmit multiple frames consecutively for a maximum channel occupancy time, called TXOPlimit. This paper considers the performance of the TXOP mechanism for multihop wireless networks. Focusing on a three-node chain topology, we model it as a tandem queueing network with two nodes. The E2ET is derived and the analysis is validated by simulation. Numerical results show that the TXOP mechanism works well for multihop wireless networks. It is also shown that adjusting TXOPlimit is significantly important in order to increase the overall throughput.
机译:基于IEEE 802.11的多跳无线网络已经吸引了下一代网络的广泛关注,因为它可以毫无困难地扩展服务覆盖范围。但是,众所周知,有效的端到端吞吐量(E2ET)由于IEEE 802.11 MAC协议的分布式协调功能(DCF)方案引起的开销而降低。为了改善此问题,IEEE 802.11e标准中定义了传输机会(TXOP)机制,通过该机制,无线节点可以在最大信道占用时间内连续传输多个帧,称为TXOPlimit。本文考虑了用于多跳无线网络的TXOP机制的性能。着重于三节点链拓扑,我们将其建模为具有两个节点的串联排队网络。得出E2ET,并通过仿真验证分析。数值结果表明,TXOP机制适用于多跳无线网络。还显示了调整TXOPlimit对于增加整体吞吐量非常重要。

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