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Cognitive radio solution for ieee 802.22.

机译:ieee 802.22的认知无线电解决方案。

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摘要

Current wireless systems suffer severe radio spectrum underutilization due to a number of problematic issues, including wasteful static spectrum allocations fixed radio functionalities and architectures and limited cooperation between network nodes. A significant number of research efforts aim to find alternative solutions to improve spectrum utilization. Cognitive radio based on software radio technology is one such novel approach, and the impending IEEE 802.22 air interface standard is the first based on such an approach. This standard aims to provide wireless services in wireless regional area network using TV spectrum white spaces. The cognitive radio devices employed feature two fundamental capabilities, namely supporting multiple modulations and datarates based on wireless channel conditions and sensing a wireless spectrum. Spectrum sensing is a critical functionality with high computational complexity. Although the standard does not specify a spectrum sensing method, the sensing operation has inherent timing and accuracy constraints.This work proposes a framework for developing a cognitive radio system based on a small form factor software radio platform with limited memory resources and processing capabilities. The cognitive radio systems feature adaptive behavior based on wireless channel conditions and are compliant with the IEEE 802.22 sensing constraints. The resource limitations on implementation platforms post a variety of challenges to transceiver configurability and spectrum sensing. Overcoming these fundamental features on small form factors paves the way for portable cognitive radio devices and extends the range of cognitive radio applications.Several techniques are proposed to overcome resource limitation on a small form factor software radio platform based on a hybrid processing architecture comprised of a digital signal processor and a field programmable gate array. Hardware reuse and task partitioning over a number of processing devices are among the techniques used to realize a configurable radio transceiver that supports several communication modes, including modulations and data rates. In particular, these techniques are applied to build configurable modulation architecture and a configurable synchronization. A modeswitching architecture based on circular buffers is proposed to facilitate a reliable transitioning between different communication modes.The feasibility of efficient spectrum sensing based on a compressive sampling technique called "Fast Fourier Sampling" is examined. The configuration parameters are analyzed mathematically, and performance is evaluated using computer simulations for local spectrum sensing applications. The work proposed herein features a cooperative Fast Fourier sampling scheme to extend the narrowband and wideband sensing performance of this compressive sensing technique.The precis of this dissertation establishes the foundation of efficient cognitive radio implementation on small form factor software radio of hybrid processing architecture.
机译:由于许多问题,包括浪费的静态频谱分配,固定的无线电功能和体系结构以及网络节点之间的有限协作,当前的无线系统遭受严重的无线电频谱利用不足。大量研究工作旨在寻找替代解决方案以提高频谱利用率。基于软件无线电技术的认知无线电就是这样一种新颖的方法,而即将到来的IEEE 802.22空口标准是第一个基于这种方法的标准。该标准旨在使用电视频谱空白空间在无线局域网中提供无线服务。所采用的认知无线电设备具有两个基本功能,即基于无线信道条件支持多种调制和数据速率以及感测无线频谱。频谱感测是具有高计算复杂度的关键功能。尽管该标准没有规定频谱感测方法,但是感测操作具有固有的时序和精度约束。这项工作提出了一个基于小型内存无线电资源且处理能力有限的小型无线电平台开发认知无线电系统的框架。认知无线电系统具有基于无线信道条件的自适应行为,并符合IEEE 802.22感应约束。实现平台上的资源限制给收发器可配置性和频谱感测带来了各种挑战。克服小尺寸因素的这些基本特征,为便携式认知无线电设备铺平了道路,并扩展了认知无线电的应用范围。提出了几种技术来克服基于包含处理器的混合处理架构的小尺寸软件无线电平台上的资源限制。数字信号处理器和现场可编程门阵列。硬件重用和在多个处理设备上的任务划分是用于实现支持多种通信模式(包括调制和数据速率)的可配置无线电收发器的技术。特别地,这些技术被应用于构建可配置的调制架构和可配置的同步。为了促进不同通信模式之间的可靠转换,提出了一种基于循环缓冲区的模式切换架构。研究了基于压缩采样技术“快速傅里叶采样”的高效频谱感知的可行性。对配置参数进行数学分析,并使用计算机仿真针对本地频谱感测应用评估性能。本文提出的工作以协作快速傅里叶采样方案为特征,以扩展该压缩感测技术的窄带和宽带感测性能。本文的内容为在混合处理架构的小型软件无线电上实现有效的认知无线电实现奠定了基础。

著录项

  • 作者

    Tachwali, Yahia.;

  • 作者单位

    The University of Oklahoma.;

  • 授予单位 The University of Oklahoma.;
  • 学科 Engineering Computer.Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 257 p.
  • 总页数 257
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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