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Enhancing spectrum utilization in dynamic cognitive radio systems.

机译:在动态认知无线电系统中提高频谱利用率。

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摘要

Cognitive radio (CR) is regarded as a viable solution to enabling flexible use of the frequency spectrum in future generations of wireless systems by allowing unlicensed secondary users (SU) to access licensed spectrum under the specific condition that no harmful interference be caused to the licensed primary users (PU) of the spectrum. In practical scenarios, the knowledge of PU activity is unknown to CRs and radio environments are mostly imperfect due to various issues such as noise uncertainty and multipath fadings. Therefore, important functionalities of CR systems are to efficiently detect availability of radio spectrum as well as to avoid generating interference to PUs, by missing detection of active PU signals.;Typically, CR systems are expected to be equipped with smart capabilities which include sensing, adapting, learning, and awareness concerned with spectrum opportunity access, radio environments, and wireless communications operations, such that SUs equipped with CRs can efficiently utilize spectrum opportunities with high quality of services. Most existing researches working on CR focus on improving spectrum sensing through performance measures such as the probabilities of PU detection and false alarm but none of them explicitly studies the improvement in the actual spectrum utilization. Motivated by this perspective, the main objective of the dissertation is to explore new techniques on the physical layer of dynamic CR systems, that can enhance actual utilization of spectrum opportunities and awareness on the performance of CR systems.;Specifically, this dissertation investigates utilization of spectrum opportunities in dynamic scenarios, where a licensed radio spectrum is available for limited time and also analyzes how it is affected by various parameters. The dissertation proposes three new methods for adaptive spectrum sensing which improve dynamic utilization of idle radio spectrum as well as the detection of active PUs in comparison to the conventional method with fixed spectrum sensing size. Moreover, this dissertation presents a new approach for optimizing cooperative spectrum sensing performance and also proposes the use of hidden Markov models (HMMs) to enabling performance awareness for local and cooperative spectrum sensing schemes, leading to improved spectrum utilization. All the contributions are illustrated with numerical results obtained from extensive simulations which confirm their effectiveness for practical applications.
机译:认知无线电(CR)被认为是可行的解决方案,通过允许无执照的次要用户(SU)在特定的条件下(不对持牌人造成有害干扰的情况下)访问许可的频谱,从而在下一代无线系统中灵活使用频谱频谱的主要用户(PU)。在实际情况下,CR不了解PU活动的知识,并且由于各种问题(例如噪声不确定性和多径衰落),无线电环境大多不完善。因此,CR系统的重要功能是通过丢失对活动PU信号的检测来有效地检测无线电频谱的可用性以及避免对PU产生干扰。通常,CR系统应配备智能功能,包括感应,与频谱机会接入,无线电环境和无线通信操作有关的适应,学习和意识,以便配备CR的SU可以有效利用频谱机会并提供高质量的服务。现有的大多数有关CR的研究都致力于通过性能度量(例如PU检测和虚警的概率)来改善频谱感知,但没有一个明确地研究实际频谱利用率的改善。以此为出发点,本论文的主要目的是在动态CR系统的物理层上探索新技术,以提高频谱机会的实际利用和对CR系统性能的认识。动态场景中的频谱机会,其中在有限的时间内可获得许可的无线电频谱,并且还分析了频谱如何受到各种参数的影响。本文提出了三种新的自适应频谱感知方法,与固定频谱感知大小的传统方法相比,可以提高空闲无线电频谱的动态利用率以及对有源PU的检测。此外,本文提出了一种优化协作频谱感知性能的新方法,并提出了使用隐马尔可夫模型(HMM)来实现对本地频谱和协作频谱感知方案的性能感知,从而提高了频谱利用率。所有的贡献都用大量模拟得到的数值结果进行了说明,这些结果证实了它们在实际应用中的有效性。

著录项

  • 作者

    Treeumnuk, Dusadee.;

  • 作者单位

    Old Dominion University.;

  • 授予单位 Old Dominion University.;
  • 学科 Engineering Computer.;Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 108 p.
  • 总页数 108
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 古生物学;
  • 关键词

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