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Multi-channel and multi-rate adaptation for high-throughput wireless networks.

机译:高吞吐量无线网络的多通道和多速率适配。

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摘要

As more mobile devices are becoming connected everyday, we face an unprecedented demand and growth for bandwidth in wireless networks. The gradual shift from personal computers (PCs) to tablets and mobile phones brings new opportunities as well as challenges. Users tend to be mobile and demand instant access to their contents. Bandwidth usage ranges from simple browsing of web pages to audio and video streaming. Due to the limited and scarce resources, care must be taken in order to utilize the spectrum more efficiently, to mediate access to a shared common medium, and, especially, to disseminate information. This dissertation focuses on designing a new channel access scheme as well as using its channel access time more efficiently through multiple channels and dynamic rate adaptation for high-throughput wireless networks.;First, it provides a new multi-channel medium access control (MAC) for bandwidth exploitation. Current IEEE 802.11 uses one common channel for both control and data packets because it is simple even though many other adjacent channels are available and left intact. We can improve the throughput significantly by simply allowing other channels to be used. The added complexity includes channel switching and additional control packets to ensure that the neighbors are aware of the channel selection. Collision freedom is difficult in wireless environment, but I show that it can be achieved for a single transceiver without requiring temporal synchronization among nodes through an asynchronous split phase together with an observation phase as well as a unique handshake.;Second, it provides an in-depth study and analysis of rate adaptation for single and multiple antenna systems, together with a new throughput enabled approach. Throughput-based approach eliminates complexity of sender-initiated rate adaptation by incorporating errors and multiple access interference (MAI) implicitly. Its main job is to simply find the best attainable throughput at the sender and keep using it.;My contributions include providing a collision-free multiple channels access MAC with no temporal synchronization and an efficient, robust, yet simple, throughput enabled rate adaptation for wireless networks. Each proposed approach to multi-channel MAC and multi-rate adaptation is validated through analysis and extensive simulations and prototype implementations. My work provides a better understanding on the current limitation of the wireless systems and new insights for further improvements, from the time node accessing the medium through multi-channel MAC to making the best use of its access time through an efficient and robust rate adaptation.
机译:随着每天越来越多的移动设备连接在一起,我们面临着无线网络带宽前所未有的需求和增长。从个人计算机(PC)向平板电脑和移动电话的逐渐转移带来了新的机遇和挑战。用户倾向于移动,并要求立即访问其内容。带宽的使用范围从简单的网页浏览到音频和视频流。由于资源有限和稀缺,因此必须谨慎使用频谱,以更有效地利用频谱,调解对共享公共介质的访问,尤其是传播信息。本论文着重设计一种新的信道接入方案,并通过多信道和高速率无线网络的动态速率自适应来更有效地利用其信道接入时间。首先,它提供了一种新的多信道媒体接入控制(MAC)。用于带宽开发。当前的IEEE 802.11使用一个公共通道同时用于控制和数据包,因为即使许多其​​他相邻通道可用并且保持不变,它也很简单。通过简单地允许使用其他通道,我们可以显着提高吞吐量。增加的复杂性包括信道切换和其他控制数据包,以确保邻居知道信道选择。冲突自由在无线环境中很难实现,但是我证明了它可以通过单个收发器实现,而无需通过异步拆分阶段,观察阶段以及唯一的握手在节点之间进行时间同步。对单天线系统和多天线系统速率适配的深入研究和分析,以及启用吞吐量的新方法。基于吞吐量的方法通过隐式合并错误和多址干扰(MAI),消除了发送方发起的速率适配的复杂性。它的主要工作是简单地在发送方找到最佳的吞吐量并继续使用它。我的贡献包括:提供无冲突的多信道访问MAC,而没有时间同步,并且为实现以下目的而进行了有效,健壮但简单的吞吐量启用速率适配:无线网络。通过分析,广泛的仿真和原型实现,可以验证每种提议的多通道MAC和多速率自适应方法。我的工作为无线系统的当前局限性提供了更好的理解,并为进一步改进提供了新的见解,从时间节点通过多通道MAC访问媒体到通过有效而稳健的速率自适应来最佳利用其访问时间。

著录项

  • 作者

    Nguyen, Duy Duc.;

  • 作者单位

    University of California, Santa Cruz.;

  • 授予单位 University of California, Santa Cruz.;
  • 学科 Engineering Computer.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 119 p.
  • 总页数 119
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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