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History Based Contention Window Control in IEEE 802.11 MAC Protocol in Error Prone Channel

机译:容易出错通道中IEEE 802.11 MAC协议中基于历史的竞争窗口控制

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Problem statement: IEEE 802.11 Medium Access Control (MAC) protocol is one of the most implemented protocols in this network. The IEEE 802.11 controls the access to the share wireless channel within competing stations. The IEEE 802.11 DCF doubles the Contention Window (CW) size for decreasing the collision within contending stations and to improve the network performances but it is not good for error prone channel because the sudden CW rest to CW_(min) may cause several collisions. Approach: The research to date has tended to focus on the current number of active stations that needs complex computations. A novel backoff algorithm is presented that optimizes the CW size with take into account the history of packet lost. Results: Finally, we compare the HBCWC with IEEE 802.11 DCF. The simulation results have shown 24.14, 56.71 and 25.33% improvement in Packet Delivery Ratio (PDR), average end to end delay and throughput compared to the IEEE 802.11 DCF. Conclusion: This study showed that monitoring the last three channel status achieve better delay and throughput that can be used for multimedia communications.
机译:问题陈述:IEEE 802.11介质访问控制(MAC)协议是该网络中最常用的协议之一。 IEEE 802.11控制对竞争站点内共享无线信道的访问。 IEEE 802.11 DCF将争用窗口(CW)大小加倍,以减少竞争站点内的冲突并提高网络性能,但对于容易出错的信道来说则不好,因为突然的CW停顿到CW_(min)可能会导致多次冲突。方法:迄今为止的研究倾向于集中在需要复杂计算的当前活动台数上。提出了一种新颖的退避算法,该算法考虑了数据包丢失的历史记录来优化CW大小。结果:最后,我们将HBCWC与IEEE 802.11 DCF进行了比较。仿真结果显示,与IEEE 802.11 DCF相比,数据包传输率(PDR),平均端到端延迟和吞吐量提高了24.14、56.71和25.33%。结论:这项研究表明,监视最后三个信道状态可以获得更好的延迟和吞吐量,可用于多媒体通信。

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