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Efficient identification and utilization of spectrum opportunities in cognitive radio networks.

机译:认知无线电网络中频谱机会的有效识别和利用。

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摘要

There has been an exponential increase in spectrum demands due to new emerging wireless services and applications, making it harder to find unallocated spectrum bands for future usage. This potential resource scarcity is rooted at inefficient utilization of spectrum under static spectrum allocation. Therefore, a new concept of dynamic spectrum access (DSA) has been proposed to opportunistically utilize the legacy spectrum bands by cognitive radio (CR) users. Cognitive radio is a key technology for alleviating this inefficient spectrum utilization, since it can help discover spectrum opportunities (or whitespaces) in which legacy spectrum users do not temporarily use their assigned spectrum bands.;In a DSA network, it is crucial to efficiently identify and utilize the whitespaces. We address this issue by considering spectrum sensing and resource allocation. Spectrum sensing is to discover spectrum opportunities and to protect the legacy users (or incumbents) against harmful interference from the CR users. In particular, sensing is an interaction between PHY and MAC layers where in the PHY-layer signal detection is performed, and in the MAC-layer spectrum sensing is scheduled and spectrum sensors are coordinated for collaborative sensing. Specifically, we propose an efficient MAC-layer sensing scheduling algorithm that discovers spectrum opportunities as much as possible for better quality-of-service (QoS), and as fast as possible for seamless service provisioning. In addition, we propose an optimal in-band spectrum sensing algorithm to protect incumbents by achieving the detectability requirements set by regulators (e.g., FCC) while incurring minimal sensing overhead.;For better utilization of discovered spectrum opportunities, we pay our attention to resource allocation in the secondary spectrum market where legacy license holders temporarily lease their own spectrum to secondary wireless service providers (WSPs) for opportunistic spectrum access by CR users. In this setting, we investigate how a secondary WSP can maximize its profit by optimally controlling the admission and eviction of its customers (i.e., CR users). In addition, we also focus on the price and quality competition between co-located WSPs where they contend for enticing customers by providing more competitive service fee while leasing the channels with best matching quality.
机译:由于新兴的无线服务和应用,频谱需求呈指数级增长,这使得寻找未分配的频谱频段以供将来使用变得更加困难。这种潜在的资源稀缺源于静态频谱分配下频谱的低效利用。因此,已经提出了动态频谱访问(DSA)的新概念,以由认知无线电(CR)用户机会性地利用遗留频谱带。认知无线电是缓解这种频谱利用效率低下的关键技术,因为它可以帮助发现频谱机会(或空白),在这些机会中传统频谱用户不会临时使用他们分配的频谱。在DSA网络中,有效识别频谱至关重要。并利用空白。我们通过考虑频谱感知和资源分配来解决此问题。频谱感测是为了发现频谱机会并保护传统用户(或现有用户)免受CR用户的有害干扰。特别地,感测是在PHY和MAC层之间的交互,其中在PHY层中执行信号检测,而在MAC层中,调度频谱感测,并协调频谱传感器以进行协作感测。具体来说,我们提出了一种有效的MAC层感知调度算法,该算法可以尽可能多地发现频谱机会以获得更好的服务质量(QoS),并尽可能快地发现频谱机会以实现无缝服务供应。此外,我们提出了一种最佳的带内频谱感测算法,通过实现监管机构(例如FCC)设定的可检测性要求,同时又将感测开销降至最低,来保护现有用户。为了更好地利用已发现的频谱机会,我们将注意力集中在资源上二级频谱市场中的分配,传统许可证持有者暂时将自己的频谱租赁给二级无线服务提供商(WSP),以供CR用户进行机会频谱访问。在这种情况下,我们研究了次级WSP如何通过最佳控制其客户(即CR用户)的接纳和驱逐来最大程度地提高其利润。此外,我们还专注于同地的WSP之间的价格和质量竞争,他们通过提供更具竞争力的服务费并同时以最佳匹配质量出租渠道来吸引客户。

著录项

  • 作者

    Kim, Hyoil.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Engineering Electronics and Electrical.;Computer Science.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 192 p.
  • 总页数 192
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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