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IEEE 802.11 wireless LAN traffic analysis: A cross-layer approach.

机译:IEEE 802.11无线局域网流量分析:一种跨层方法。

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摘要

The deployment of broadband wireless data networks, e.g., wireless local area networks (WLANs) [29], experienced tremendous growth in the last several years, and this trend is continuously gaining momentum. In fact, WLAN is becoming an indispensable component of the modern telecommunication infrastructure. Despite this optimistic outlook, however, little is known about the impact of the wireless channel on the characteristics of WLAN traffic. This dissertation characterizes the correlation structures of WLAN channel with traffic statistics from a cross-layer point of view, and provides new measurement methodologies and statistical models for WLAN networks.; Currently WLAN standards are designed within the paradigm of the layered network architecture. For example, the architecture of IEEE 802.11 is almost identical to the Ethernet. However, wireless networks are fundamentally different from their wired peers due to the shift of transmission media from cables to over-the-air radio waves. This transition exposes wireless systems to the influence of radio propagation, and more importantly, to the temporal and spatial fluctuations of the radio channel that can actually be propagated up to upper layers. However, the current WLAN architecture isolates network layers, and largely ignores this impact. Therefore, we believe that a cross-layer based approach is necessary to understand and reflect this underlying impact of the channel to the upper layers of the network, especially in relation to WLAN traffic behavior.; The main goal of this dissertation work is to experiment with and develop new methods for identifying channel characteristics. Thereby utilizing this knowledge, we show how to predict and improve WLAN performance. Within the framework of the developed cross-layer measurement methodology, we conducted extensive measurements in different physical environments and different settings such as office buildings and stores, and (1) show that the impact of the propagation channel can be quantified by using simple large scale channel metric (throughput over longer period of time), and (2) also present the existence of a Doppler effect within today's WLAN packet traffic at sub-second time scales. We also show the real-world WLAN usage pattern from our measurement results. From this data, we conclude that the key issues to study WLAN networks include accurate site-specific propagation channel modeling and real-time autonomous traffic control.
机译:宽带无线数据网络的部署,例如无线局域网(WLAN)[29],在过去几年中经历了巨大的增长,并且这种趋势正在不断获得动力。实际上,WLAN正在成为现代电信基础架构中不可或缺的组成部分。尽管前景乐观,但是对于无线信道对WLAN流量特性的影响知之甚少。本文从跨层的角度对WLAN信道与流量统计的相关结构进行了表征,为WLAN网络提供了新的测量方法和统计模型。当前,WLAN标准是在分层网络体系结构范式内设计的。例如,IEEE 802.11的体系结构几乎与以太网相同。但是,由于传输介质从电缆转移到无线无线电波,无线网络与有线网络根本不同。这种过渡使无线系统受到无线电传播的影响,更重要的是使无线电系统的无线电信道的时间和空间波动实际上可以传播到高层。但是,当前的WLAN体系结构隔离了网络层,并且很大程度上忽略了这种影响。因此,我们认为基于跨层的方法对于理解和反映信道对网络上层的这种潜在影响是必要的,尤其是在WLAN流量行为方面。本论文的主要目的是试验和开发新的识别信道特征的方法。通过这些知识,我们展示了如何预测和改善WLAN性能。在已开发的跨层测量方法的框架内,我们在不同的物理环境和不同的环境(例如办公楼和商店)中进行了广泛的测量,并且(1)表明可以通过使用简单的大规模方法来量化传播通道的影响信道度量(较长时间段内的吞吐量),以及(2)在亚秒级的时间范围内,当今的WLAN数据包流量中也存在多普勒效应。我们还将根据测量结果显示实际的WLAN使用模式。根据这些数据,我们得出结论,研究WLAN网络的关键问题包括准确的特定于站点的传播通道建模和实时自主流量控制。

著录项

  • 作者

    Na, Chen.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 130 p.
  • 总页数 130
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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