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Fine-grained Channel Access in Wireless LAN

机译:无线局域网中的细粒度通道访问

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摘要

Modern communication technologies are steadily advancing the physical layer (PHY) data rate in wireless LANs, from hundreds of Mbps in current 802.1 In to over Gbps in the near future. As PHY data rates increase, however, the overhead of media access control (MAC) progressively degrades data throughput efficiency. This trend reflects a fundamental aspect of the current MAC protocol, which allocates the channel as a single resource at a time.rnThis paper argues that, in a high data rate WLAN, the channel should be divided into separate subchannels whose width is commensurate with PHY data rate and typical frame size. Multiple stations can then contend for and use subchannels simultaneously according to their traffic demands, thereby increasing overall efficiency. We introduce FICA, a fine-grained channel access method that embodies this approach to media access using two novel techniques. First, it proposes a new PHY architecture based on OFDM that retains orthogonality among subchannels while relying solely on the coordination mechanisms in existing WLAN, carrier-sensing and broadcasting. Second, FICA employs a frequency-domain contention method that uses physical layer RTS/CTS signaling and frequency domain backoff to efficiently coordinate subchannel access. We have implemented FICA, both MAC and PHY layers, using a software radio platform, and our experiments demonstrate the feasibility of the FICA design. Further, our simulation results suggest FICA can improve the efficiency ratio of WLANs by up to 400% compared to existing 802.11.
机译:现代通信技术正在稳步提高无线局域网中的物理层(PHY)数据速率,从当前的802.1 In的数百Mbps到不久的将来的Gbps。但是,随着PHY数据速率的提高,媒体访问控制(MAC)的开销逐渐降低了数据吞吐效率。这种趋势反映了当前MAC协议的基本方面,该协议一次将信道分配为一个资源。rn本文认为,在高数据速率WLAN中,应将信道划分为单独的子信道,其宽度与PHY相称。数据速率和典型帧大小。然后,多个站可以根据它们的业务需求同时争用并使用子信道,从而提高了整体效率。我们介绍FICA,这是一种细粒度的频道访问方法,它使用两种新颖的技术体现了这种媒体访问方法。首先,它提出了一种基于OFDM的新PHY架构,该架构保留了子信道之间的正交性,同时仅依赖于现有WLAN,载波侦听和广播中的协调机制。其次,FICA采用频域竞争方法,该方法使用物理层RTS / CTS信令和频域退避来有效地协调子信道访问。我们已经使用软件无线电平台实现了MAC和PHY层的FICA,我们的实验证明了FICA设计的可行性。此外,我们的仿真结果表明,与现有的802.11相比,FICA可以将WLAN的效率提高多达400%。

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