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User-based filter utilization for multicarrier schemes.

机译:多载波方案的基于用户的滤波器利用率。

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摘要

Multicarrier modulation is a transmission technique that is quite convenient for high data rates in wireless communication. Information symbols are partitioned and parallelly sent over multiple narrowband subchannels. Pulse shaping filters are critically important in multicarrier modulation for determining the characteristics of signal in time and frequency domains. In this thesis, we propose a new pulse shaping approach for multicarrier schemes to increase spectral efficiency in multi-user scenarios. Conventionally, the time-frequency lattice and the prototype filter are designed considering the worst-case of time-varying multipath channel. However, this approach ignores to make use of multi-user diversity and leads to excessive spacings between successive symbols in time and frequency. Unlike the prevalent methods, we investigate user-based filter utilization considering the wireless channel of each user individually to prevent over-design and improve spectral efficiency. Also, this approach is implemented in a denser time-frequency lattice design. Symbols are allowed to be overlapped (depending on time-frequency dispersion of their individual channels) as long as the signal-to-interference ratios (SIRs) observed by all users are kept above a certain level. Employing user-specific filters to enhance SIR of the user exposed to the most interference provides more overlapping flexibility. Therefore, further improvement in spectral efficiency is achieved in our wireless communication system design.
机译:多载波调制是一种传输技术,对于无线通信中的高数据速率非常方便。信息符号被划分并在多个窄带子信道上并行发送。脉冲整形滤波器对于确定时域和频域信号的特性在多载波调制中至关重要。本文针对多载波方案提出了一种新的脉冲整形方法,以提高多用户场景下的频谱效率。按照惯例,时频晶格和原型滤波器的设计考虑了时变多径信道的最坏情况。然而,该方法忽略了利用多用户分集,并且导致时间和频率上的连续符号之间的过度间隔。与流行的方法不同,我们考虑每个用户的无线信道来研究基于用户的滤波器利用率,以防止过度设计并提高频谱效率。同样,这种方法是在更密集的时频点阵设计中实现的。只要所有用户观察到的信号干扰比(SIR)保持在一定水平以上,符号就可以重叠(取决于它们各自通道的时频色散)。使用特定于用户的滤波器来增强受到最大干扰的用户的SIR,可以提供更多的重叠灵活性。因此,在我们的无线通信系统设计中,频谱效率得到了进一步的提高。

著录项

  • 作者

    Ankarali, Zekeriyya Esat.;

  • 作者单位

    University of South Florida.;

  • 授予单位 University of South Florida.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 M.S.E.E.
  • 年度 2013
  • 页码 55 p.
  • 总页数 55
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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