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Communication protocols for wireless cognitive radio ad-hoc networks.

机译:无线认知无线电自组织网络的通信协议。

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摘要

Cognitive radio (CR) technology allows devices to share the wireless spectrum with other users that have a license for operation in these spectrum bands. This area of research promises to solve the problem of spectrum scarcity in the unlicensed bands, and improve the inefficient spectrum utilization in the bands reserved for the licensed users. However, the opportunistic use of the available spectrum by the CR users must not affect the licensed users. This raises several concerns regarding spectrum sensing, sharing and reliable end-to-end communication in CR networks.;This thesis is concerned with the design and implementation of communication protocols for the multi-hop infrastructure-less CR ad-hoc networks (CRAHNs). In addition, it also addresses the critical issue of interference-free spectrum usage in specific ad-hoc architectures, such as, resource-constrained wireless sensor networks and wireless mesh networks that have high traffic volumes.;The problems of spectrum management that are unique to CR networks are first identified in this thesis. These issues are then addressed at each layer of the network protocol stack while considering the distributed operation in CRAHNs. At the physical layer an algorithmic suite is proposed that allows the CR devices to detect and adapt to the presence of wireless LANs and commercial microwave ovens. A common control channel is designed that allows sharing of the spectrum information between the CR users, even when the available spectrum varies dynamically. A spectrum sharing scheme for mesh networks is proposed at the link layer that allows cooperative detection of the licensed users and fair utilization of the available spectrum among the mesh devices. The spectrum availability and route formation are then considered jointly at the network layer, so that the licensed users are protected as well as the CRAHN performance is maximized. Finally, we extend the classical TCP at the transport layer to ensure end-to-end reliability in a multi-hop CR environment.
机译:认知无线电(CR)技术允许设备与拥有在这些频段中操作许可的其他用户共享无线频谱。这一研究领域有望解决非授权频段频谱稀缺的问题,并改善预留给授权用户的频段中频谱的低效利用。但是,CR用户机会性地使用可用频谱不得影响许可用户。这引起了人们对于CR网络中频谱感知,共享和可靠的端到端通信的关注。本文主要涉及多跳无基础设施CR自组织网络(CRAHN)的通信协议的设计和实现。 。此外,它还解决了特定自组织架构中无干扰频谱使用的关键问题,例如资源受限的无线传感器网络和具有高流量的无线网状网络。;独特的频谱管理问题本文首先确定了接入CR网络的方法。然后,在考虑CRAHN中的分布式操作的同时,在网络协议堆栈的每一层解决这些问题。在物理层上,提出了一种算法套件,该套件允许CR设备检测并适应无线局域网和商用微波炉的存在。设计了一个公共控制信道,即使在可用频谱动态变化的情况下,也允许在CR用户之间共享频谱信息。在链路层提出了一种用于网格网络的频谱共享方案,该方案允许对许可用户进行协作检测,并公平利用网格设备之间的可用频谱。然后在网络层一起考虑频谱可用性和路由形成,以便保护许可用户,并最大限度地提高CRAHN性能。最后,我们在传输层扩展了经典的TCP,以确保在多跳CR环境中的端到端可靠性。

著录项

  • 作者

    Chowdhury, Kaushik R.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 153 p.
  • 总页数 153
  • 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

  • 入库时间 2022-08-17 11:38:25

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