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CSMA/CA with RTS-CTS overhead reduction for M2M communication

机译:用于M2M通信的具有RTS-CTS开销减少功能的CSMA / CA

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Machine to machine communication (M2M) or machine type communication (MTC) facilitates communication without any human intervention. These applications will support an enormous number of stations (STAs). To mitigate degradation of the throughput and delay performance in wireless local area networks (WLAN) that employ carrier sense multiple access collision avoidance (CSMA/CA) protocol with request to send and clear to send (RTS/CTS) mechanism, we propose to reduce the overhead introduced by the hand shake mechanism. The medium access control (MAC) overhead caused by the RTS and CTS messages is high comparing to the total duration of successful transmission. In order to reduce the MAC overhead we propose in this work a new strategy to serve many users successively. This strategy consists on sending many RTS in parallel by different stations on different frequency sub-bands. Once the RTS messages do not collide with each other, there will be no need to resend the RTS and wait for a CTS to gain the channel access. In this paper, this proposed strategy is investigated and we demonstrate that it reaches better saturation throughput and delay especially in loaded networks.
机译:机器对机器通信(M2M)或机器类型通信(MTC)促进了通信,而无需任何人工干预。这些应用程序将支持大量的站(STA)。为了缓解采用载波侦听多路访问避免冲突(CSMA / CA)协议并带有发送和清除发送(RTS / CTS)机制的无线局域网(WLAN)的吞吐量下降和延迟性能下降的问题,我们建议减少握手机制带来的开销。与成功传输的总持续时间相比,由RTS和CTS消息引起的媒体访问控制(MAC)开销很高。为了减少MAC开销,我们在这项工作中提出了一种新的策略来连续服务于许多用户。该策略包括由不同站点在不同频率子带上并行发送许多RTS。一旦RTS消息不相互冲突,就无需重新发送RTS并等待CTS获得信道访问权限。在本文中,对这种提议的策略进行了研究,我们证明了它可以达到更好的饱和吞吐量和延迟,尤其是在负载网络中。

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