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MAC-PHY Cross-layer Techniques for Simultaneous Multiuser Communication in Wireless Networks.

机译:无线网络中同时进行多用户通信的MAC-PHY跨层技术。

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摘要

Layering in wireless networks provide clear abstractions to how various resources are managed for a particular communication link. However, the unpredictability of the wireless channel presents great challenge to these clear abstractions. Often, optimizations in these layers are not transparent to others. This creates a necessity to violate the modular approach and share crosslayer information to modify each layer's functionalities, which eventually improves the overall performance of the network.;In this thesis, novel MAC-PHY crosslayer protocols have been designed, implemented and evaluated. These protocols provide unprecedented gain in various aspects of a wireless network, by facilitating simultaneous multiuser communication. By harnessing the untapped potential of the various signal processing subsystems in the physical layer, these protocols are able to increase network throughput, make certain group communications faster and enable covert communication. Using reconfigurable hardware to expose physical layer information, improvement is achieved in higher layers. Furthermore, it is also important to modify the physical layer based on the feedback from higher layers. The two-way handshaking changes the conventional modular approach and allows implementation of simultaneous communication in wireless domain.;To make the crosslayer techniques practical, this thesis presents clear implementation steps to embed these concepts as an extension to common wireless network protocols and evaluate those using practical experiments and radio measurements. Through these techniques we are able to show practical benefits from a mutable radio and a crosslayer approach to protocol design for next generation, high bandwidth wireless networks.
机译:无线网络中的分层为如何为特定通信链路管理各种资源提供了清晰的抽象。然而,无线信道的不可预测性给这些清晰的抽象提出了巨大的挑战。通常,这些层中的优化对其他人并不透明。这就产生了违反模块化方法和共享跨层信息以修改每一层功能的必要性,从而最终改善了网络的整体性能。本论文设计,实现和评估了新颖的MAC-PHY跨层协议。这些协议通过促进同时进行的多用户通信,在无线网络的各个方面提供了空前的收益。通过利用物理层中各种信号处理子系统的未开发潜力,这些协议能够提高网络吞吐量,更快地进行某些组通信并实现隐蔽通信。使用可重新配置的硬件公开物理层信息,可以在更高的层上实现改进。此外,基于更高层的反馈来修改物理层也很重要。双向握手改变了传统的模块化方法,并允许在无线域中同时进行通信。为了使跨层技术切实可行,本论文提出了清晰的实现步骤,以将这些概念嵌入通用无线网络协议的扩展中并评估使用实际实验和无线电测量。通过这些技术,我们可以展示出可变无线电和跨层方法在下一代高带宽无线网络协议设计中的实际好处。

著录项

  • 作者

    Saha, Dola.;

  • 作者单位

    University of Colorado at Boulder.;

  • 授予单位 University of Colorado at Boulder.;
  • 学科 Computer Science.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 162 p.
  • 总页数 162
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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