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首页> 外文期刊>Eurasip Journal on Wireless Communications and Networking >A distributed message in message aware concurrent transmission protocol in IEEE 802.11 WLANs
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A distributed message in message aware concurrent transmission protocol in IEEE 802.11 WLANs

机译:IEEE 802.11 WLAN中的消息感知并发传输协议中的分布式消息

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摘要

The IEEE 802.11 distributed coordination function (DCF) employs the carrier sense technology to avoid frame collisions. However, recent measurement studies demonstrate that the physical layer (PHY) capture effect frequently occurs; even when frames collide, one of them can be decoded successfully if its relative signal strength is high enough. Furthermore, a new wireless PHY technology, called Message In Message (MIM), adopts an advanced preamble detection function to enhance the PHY capture effect. To fully exploit MIM in multi-collision environments, frame transmission orders have to be carefully scheduled. It also requires tight time synchronization at multiple access points (APs), thus induces large overheads. In this article, we propose an opportunistic concurrent transmission protocol called D istributed O pportunistic M IM-aware C oncurrent T ransmission (DOMCT) which exploits the MIM functionality in a distributed manner obliterating the centralized control. In DOMCT, APs first prepare interference MAPs to discover the possible simultaneous MIM transmission opportunities. Detecting the inadvertent frame transmission from a neighboring AP, an AP transmits another frame intentionally if both frames can successfully be decoded at destination nodes by the MIM capture effect. Through both analysis and extensive ns-2 simulations, we show that DOMCT outperforms the legacy DCF by up to 61% and observe comparable performance to that of the centralized approach.
机译:IEEE 802.11分布式协调功能(DCF)采用载波侦听技术来避免帧冲突。但是,最近的测量研究表明,经常发生物理层(PHY)捕获效应的现象。即使帧发生冲突,如果其相对信号强度足够高,也可以成功解码其中之一。此外,称为消息中消息(MIM)的新无线PHY技术采用了高级的前同步码检测功能,以增强PHY捕获效果。为了在多冲突环境中充分利用MIM,必须仔细计划帧传输顺序。它还需要在多个接入点(AP)上进行严格的时间同步,因此会产生较大的开销。在本文中,我们提出了一种机会并行并发传输协议,称为D分布式O机会M IM感知C当前传输(DOMCT),该协议以分布式方式利用MIM功能,从而消除了集中控制。在DOMCT中,AP首先准备干扰MAP,以发现可能的同时MIM传输机会。如果可以通过MIM捕获效果在目标节点上成功解码两个帧,则检测到来自相邻AP的无意帧传输,AP会故意发送另一个帧。通过分析和大量的ns-2仿真,我们表明DOMCT的性能比传统DCF高出61%,并观察到与集中式方法相当的性能。

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