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Sidelobe suppression for OFDM based cognitive radios in dynamic spectrum access networks.

机译:动态频谱接入网络中基于OFDM的认知无线电的旁瓣抑制。

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摘要

As the demand for sophisticated wireless mobile applications incorporating efficient modulation techniques is ever increasing, more bandwidth is needed to support these applications. However, bandwidth is a limited resource. Also, as the existing spectrum allocation policies of the Federal Communications Commission (FCC) allow spectrum access to licensed users only, it has been proven by various spectrum measurement campaigns that, the current licensed spectrum usage across time and frequency is inefficient. Therefore, in order for the unlicensed users to access the unused portions of the licensed spectrum, the concept of "spectrum pooling" has been proposed.; Spectrum pooling is based on dynamic spectrum access (DSA), wherein the secondary user decides on whether or not a particular frequency band is currently being used and transmits the signal in that unused licensed band, while ensuring that the system performance of the primary as well as the secondary is not impacted. Thus, coexistence of the primary and the secondary users is an important criterion that makes DSA a feasible solution for efficient spectrum usage. This thesis investigates an important problem concerning the coexistence of the primary and the secondary users.; Orthogonal frequency division multiplexing (OFDM) has proven to be the prime candidate for spectrum pooling based wireless transmission systems as it can support high data rates and is robust to channel impairments. Even though the secondary transmissions help in improving the spectral efficiency by transmitting in the spectral white spaces left unused by the primary users, the large sidelobes resulting from the use of OFDM result in high out-of-band (OOB) radiation. Thus, the coexistence of the primary and the secondary users in the form of spectrum sharing is dependant on the suppression of the interference from the rental systems to the legacy systems. This thesis presents two novel techniques to suppress the OOB interference from the secondary user to the primary user, while not affecting the other system parameters of the secondary user by a great deal.
机译:随着对结合有效调制技术的复杂无线移动应用的需求不断增长,需要更多带宽来支持这些应用。但是,带宽是有限的资源。此外,由于联邦通信委员会(FCC)的现有频谱分配政策仅允许许可用户使用频谱,因此各种频谱测量活动已证明,当前跨时间和频率的许可频谱使用效率很低。因此,为了使未许可用户访问许可频谱的未使用部分,已经提出了“频谱池”的概念。频谱池基于动态频谱访问(DSA),其中次要用户确定当前是否正在使用特定频段,并在未使用的许可频段内发送信号,同时还要确保主要频段的系统性能因为中学不受影响。因此,主要用户和次要用户的共存是使DSA成为有效使用频谱的可行解决方案的重要标准。本文研究了一个主要和次要用户共存的重要问题。正交频分复用(OFDM)已被证明是基于频谱池的无线传输系统的主要候选者,因为它可以支持高数据速率,并且对信道损害具有鲁棒性。即使辅助传输通过在主要用户未使用的频谱空白空间中进行传输来帮助提高频谱效率,但是由于使用OFDM而导致的较大旁瓣会导致高带外(OOB)辐射。因此,主要用户和次要用户以频谱共享的形式共存取决于抑制从租赁系统到传统系统的干扰。本文提出了两种新颖的技术来抑制从次要用户到主要用户的OOB干扰,同时又不会对次要用户的其他系统参数产生很大的影响。

著录项

  • 作者

    Pagadarai, Srikanth.;

  • 作者单位

    University of Kansas.$bElectrical Engineering & Computer Science.;

  • 授予单位 University of Kansas.$bElectrical Engineering & Computer Science.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 M.S.
  • 年度 2007
  • 页码 89 p.
  • 总页数 89
  • 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

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