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Decoupling Channel Contention and Data Transmission in Dense Wireless Infrastructure Network

机译:致密无线基础设施网络中的解耦信道争用和数据传输

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In an infrastructure wireless network, with the increase of the number of wireless nodes, the channel collisions become more intense and the network performance declines sharply. In this paper, we propose a novel distributed Media Access Control (MAC) protocol and attempt to decouple the channel contention and data transmission process. Wherein, the channel utilization time is split into channel contention period and data transmission period. During the contention period, the nodes attempt to transmit a short control frame to compete the channel and they will be piped into the potential queue if they succeed. In the following data transmission period, according to the order of the transmission sequence, the node can be scheduled to transmit successively the data packet, and every node will be noticed by the Acknowledgement (ACK) piggybacking. Furthermore, we design an adaptive scheme to adjust the length of the contention period to improve the channel utilization. The simulation results show that our proposed algorithm can improve significantly the performance in terms of system throughput, transmission delay and channel utilization compared to the IO-MAC algorithm and legacy IEEE 802.11 DCF mechanism.
机译:在基础设施无线网络中,随着无线节点的数量的增加,信道冲突变得更加激烈,网络性能急剧下降。在本文中,我们提出了一种新颖的分布式媒体访问控制(MAC)协议,并尝试将信道争用和数据传输过程分离。其中,信道利用时间被分成信道争用周期和数据传输时段。在争论期间,节点尝试传输短控制帧以竞争信道,如果它们成功,它们将被送入潜在队列。在下面的数据传输时段中,根据传输序列的顺序,可以调度节点以连续发送数据分组,并且每个节点将被捎带的确认(ACK)被注意到。此外,我们设计了一种自适应方案来调整争用周期的长度,以提高信道利用率。仿真结果表明,与IO-MAC算法和遗留IEEE 802.11 DCF机制相比,我们所提出的算法可以在系统吞吐量,传输延迟和信道利用方面显着提高性能。

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