The 802.11 MAC protocol leads to inefficient equilibria

Godfrey Tan, J. Guttag
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引用次数: 86

Abstract

Wireless local area networks (WLANs) based on the family of 802.11 technologies are becoming ubiquitous. These technologies support multiple data transmission rates. Transmitting at a lower data rate (by using a more resilient modulation scheme) increases the frame transmission time but reduces the hit error rate. In non-cooperative environments such as public hot-spots or WLANs operated by different enterprises that are physically close to each other, individual nodes attempt to maximize their achieved throughput by adjusting the data rate or frame size used, irrespective of the impact of this on overall system performance. In this paper, we show both analytically using a game theoretic model and through simulation that the existing 802.11 distributed MAC protocol, DCF (for distributed coordination function), as well as its enhanced version, which is being standardized at part of 802.11e, can lead non-cooperative nodes to undesirable Nash equilibriums, in which the wireless channel is inefficiently used. We show that by establishing independence between the allocation of the shared channel resource and the transmission strategies used by individual nodes, an ideal MAC protocol can lead rational nodes to arrive at equilibriums in which all competing nodes achieve higher throughputs tan with DCF.
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802.11 MAC协议导致了低效率均衡
基于802.11系列技术的无线局域网(wlan)正变得无处不在。这些技术支持多种数据传输速率。以较低的数据速率传输(通过使用更有弹性的调制方案)增加了帧传输时间,但降低了命中错误率。在非合作环境中,如公共热点或由不同企业运营的wlan,它们在物理上彼此靠近,单个节点试图通过调整所使用的数据速率或帧大小来最大化其实现的吞吐量,而不考虑这对整体系统性能的影响。在本文中,我们使用博弈论模型和仿真分析表明,现有的802.11分布式MAC协议DCF(用于分布式协调函数)及其增强版本,正在802.11e部分标准化,可能导致非合作节点出现不希望的纳什均衡,其中无线信道利用率低下。我们表明,通过在共享信道资源的分配和单个节点使用的传输策略之间建立独立性,理想的MAC协议可以使合理节点达到均衡,其中所有竞争节点获得比DCF更高的吞吐量。
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