基于反向传输的IEEE 802.11无线网络的网络编码感知MAC协议分析

Raúl Palacios, H. Haile, J. Alonso-Zarate, F. Granelli
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引用次数: 3

摘要

在基于IEEE 802.11的无线网络中实现网络编码(NC)提出了为负责编码的中继节点提供额外传输优先级的重要挑战。这些节点能够在每次传输中传递比转发单个数据包的节点更多的信息,通过将多个接收到的数据包组合在一个编码数据包中。为了传输数据,节点执行IEEE 802.11介质访问控制(MAC)协议,称为分布式协调功能(DCF)。因此,在高拥塞情况下,它们相互竞争无线信道的接入,获得平等的传输机会。因此,拥塞中继节点将严重限制网络的性能。在本文中,我们研究了一种向后兼容的机制,称为反向DCF (RD-DCF),它允许中继节点在成功接收数据后传输数据。我们从吞吐量和能源效率方面分析了所提出的协议在有和没有NC的情况下的性能限制。性能评估考虑了不同的流量负载、数据包长度和数据速率。这项工作的结果表明,与传统的DCF相比,所提出的RD-DCF+NC协议可以将吞吐量和能源效率提高335%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of a network coding-aware MAC protocol for IEEE 802.11 wireless networks with Reverse Direction transmissions
The implementation of Network Coding (NC) in IEEE 802.11-based wireless networks presents the important challenge of providing additional transmission priority for the relay nodes responsible for coding. These nodes are able to convey more information in each transmission than those that forward single packets, by combining several received packets in a single coded packet. To transmit data, the nodes execute the IEEE 802.11 Medium Access Control (MAC) protocol, called the Distributed Coordination Function (DCF). Thus, they compete for the access to the wireless channel and get equal transmission opportunities under high congestion. As a result, congested relay nodes will severely limit the performance of the network. In this paper, we investigate a backwards-compatible mechanism, called Reverse Direction DCF (RD-DCF), that allows relay nodes to transmit data upon successful reception of data. We analyze the performance limits of the proposed protocol with and without NC in terms of throughput and energy efficiency. The performance evaluation considers different traffic loads, packet lengths, and data rates. The results of this work show that the proposed RD-DCF+NC protocol can improve throughput and energy efficiency up to 335% when compared to legacy DCF.
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