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A new reservation-based Medium-Access Control for full-duplex WLANs

机译:一种用于全双工WLAN的新的基于预留的媒体访问控制

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摘要

In-band simultaneous transmission between an access point (AP) and a node was enabled by recent full-duplex radio communication research. While this event was expected to increase throughput within the feasibility of full-duplex radio communication, the conventional Medium Access Control (MAC) Distributed Coordination Function (DCF) protocol in wireless local area networks (WLAN) limits this performance enhancement. Each node competes for transmission opportunities because DCF is based on half-duplex communication principles. The competition among nodes and an AP creates excessive overhead and many collisions. In this paper, we propose a new MAC protocol called Reservation-Based Medium-Access Control (RMAC) based on node reservation in WLAN with full-duplex radio. RMAC is compatible with DCF. RMAC decreases collisions by reducing the number of competing nodes and increases throughput by reducing competition overhead. Our RMAC assures nodes a transmission opportunity without collision if a node has several packets to send. We show that RMAC achieves at least 86.3% more throughput than full-duplex radio based on DCF. The RMAC protocol also maintains high throughput even in cases of dense node deployment.
机译:最近的全双工无线电通信研究实现了接入点(AP)和节点之间的带内同时传输。尽管预计此事件将在全双工无线电通信的可行性范围内增加吞吐量,但无线局域网(WLAN)中的常规媒体访问控制(MAC)分布式协调功能(DCF)协议限制了此性能增强。每个节点都在争夺传输机会,因为DCF基于半双工通信原理。节点与AP之间的竞争会产生过多的开销和许多冲突。在本文中,我们基于全双工无线局域网中的节点预留,提出了一种新的MAC协议,称为基于预留的媒体访问控制(RMAC)。 RMAC与DCF兼容。 RMAC通过减少竞争节点的数量来减少冲突,并通过减少竞争开销来增加吞吐量。如果一个节点有多个要发送的数据包,我们的RMAC可确保节点没有冲突的传输机会。我们证明,与基于DCF的全双工无线电相比,RMAC实现的吞吐量至少提高了86.3%。即使在密集节点部署的情况下,RMAC协议也保持高吞吐量。

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