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Carrier interferometry for next generation CDMA and TDMA wireless systems: A multi-carrier framework.

机译:下一代CDMA和TDMA无线系统的载波干涉测量:多载波框架。

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摘要

In this thesis, we introduce an enabling technology called Carrier Interferometry, that has the potential to satisfy many of the requirements of next generation wireless systems. The objective of this work is not only to present the technology, but also demonstrate the benefits it offers to multiple access schemes like MC-CDMA and TDMA, and modulation schemes like FSK.; We first introduce the Carrier Interferometry (CI) signal, the basic building block for the Carrier Interferometry approach. This signal corresponds to the superposition of N orthogonal carriers equally spaced in frequency. A theoretical analysis of the orthogonal and pseudo-orthogonal properties of this CI signal is provided and it is shown how as a result, this signal can support many practical applications.; We apply the CI approach to an MC-CDMA system in the form of a powerful set of complex spreading codes (referred to as CI codes). These CI spreading codes of length N have a unique feature which allows the CI/MC-CDMA system to (1) support N users orthogonally; (2) then, as system demand increases, codes can be selected to accommodate up to an additional N users pseudo- orthogonally. Furthermore, the performance of CI/MC-CDMA shows minimum degradation when capacity is doubled.; We also introduce the CI signal into TDMA systems as a multi-carrier implementation of the sinc pulse shape. We demonstrate that this proposed multi-carrier pulse shape along with frequency domain receiver processing, provides significant performance gains relative to TDMA systems employing traditional pulse shapes. The CI approach in TDMA also results in a doubling of throughput via pseudo-orthogonality.; The CI approach is also applied to fundamental FSK modulation to yield significant performance and throughput gains. We demonstrate that, by introducing a multi-carrier implementation of FSK using the CI approach, along with a novel coherent receiver, we can successfully employ an FSK system in a frequency selective channel and exploit frequency diversity benefits.; Finally, we demonstrate how our CI-based multi-carrier approach can be extended to the synthesis of any arbitrary pulse shape. We demonstrate a corresponding signal decomposition at the receiver side leading to dramatic performance gains.
机译:在本文中,我们介绍了一种称为载波干涉测量技术的启用技术,该技术有可能满足下一代无线系统的许多要求。这项工作的目的不仅是介绍这项技术,而且还证明了它为诸如MC-CDMA和TDMA之类的多址方案和诸如FSK之类的调制方案所提供的好处。我们首先介绍载波干涉术(CI)信号,它是载波干涉术方法的基本组成部分。此信号对应于频率相等间隔的 N 个正交载波的叠加。提供了对该CI信号正交和伪正交特性的理论分析,结果表明该信号如何支持许多实际应用。我们以功能强大的一组复杂扩频码(称为CI码)的形式将CI方法应用于MC-CDMA系统。这些长度为 N 的CI扩展码具有独特的功能,允许CI / MC-CDMA系统(1)正交地支持 N 个用户; (2)然后,随着系统需求的增加,可以选择代码来伪正交地容纳最多额外的 N 个用户。此外,当容量增加一倍时,CI / MC-CDMA的性能表现出最小的下降。我们还将CI信号作为正弦脉冲形状的多载波实现方式引入TDMA系统。我们证明,与采用传统脉冲形状的TDMA系统相比,该提议的多载波脉冲形状以及频域接收器处理可显着提高性能。 TDMA中的CI方法还通过伪正交性使吞吐量增加了一倍。 CI方法还应用于基本FSK调制,以产生显着的性能和吞吐量增益。我们证明,通过使用CI方法引入FSK的多载波实现以及新颖的相干接收机,我们可以成功地在频率选择信道中采用FSK系统并利用频率分集的好处。最后,我们演示了如何将基于CI的多载波方法扩展到任意脉冲形状的合成。我们在接收机端演示了相应的信号分解,从而显着提高了性能。

著录项

  • 作者

    Natarajan, Balasubramaniam.;

  • 作者单位

    Colorado State University.;

  • 授予单位 Colorado State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 163 p.
  • 总页数 163
  • 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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