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Designs of space-time codes for multiple-antenna wireless communication systems.

机译:多天线无线通信系统的时空代码设计。

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摘要

Space-time coding is an effective approach to improve the reliability of data transmission as well as the data rates over multiple-input multiple-output (MIMO) fading wireless channels. In this thesis, space-time code designs are investigated with a view to address practical concerns such as decoding complexity and channel impairments.; We study low-decoding complexity space-time block codes (STBC), a popular subclass of space-time codes, for quasi-static frequency-flat fading MIMO channels. Therefore, the space-time code matrices are designed to allow the separation of transmitted symbols into groups for decoding; we call these codes multi-group decodable STBC. A new multi-group decodable STBC, called orthogonality-embedded space-time (OEST) codes, is then proposed. The equivalent channel, general decoder, and maximum mutual information of OEST codes are presented. The following contributions, based on OEST codes, are made: (1) It is shown that OEST codes subsume existing orthogonal, quasi-orthogonal, and circulant STBC. Therefore, the results of OEST codes can be readily applied to these codes. (2) New STBC, called semi-orthogonal algebraic space-time (SAST) codes, are derived from OEST codes. SAST codes are rate-one, full-diversity, four-group decodable, delay-optimal for even number of antennas. SAST codes nearly achieve the capacity of multiple-input single-output channels. (3) The framework of OEST codes is applied to the existing single-symbol decodable codes, like minimum decoding complexity quasi-orthogonal STBC (MDC-QSTBC) and coordinate-interleaved orthogonal designs, and 4-group quasi-orthogonal STBC. Several open problems of these codes are solved, including equivalent channel, general decoder, symbol error rate performance analysis, and optimal signal rotations. Additionally, MDC-QSTBC are shown to achieve full diversity using antenna selection with limited feedback.; We also consider the designs of space-time codes for MIMO systems, using orthogonal frequency division multiplexing (OFDM) for frequency-selective fading channels. The resulting codes are called space-frequency codes. The OFDM system performance is heavily affected by inter-carrier interference, which is caused by frequency offset between the carrier oscillators of the transmitter and receiver. We analytically quantify the performance loss of space-frequency codes clue to frequency offset. A new class space-frequency codes, called inter-carrier interference self-cancellation space-frequency (ISC-SF) codes, is proposed to effectively mitigate the effect of frequency offset.
机译:空时编码是一种有效的方法,可以提高数据传输的可靠性以及多输入多输出(MIMO)衰落无线信道上的数据速率。本文针对时空码设计进行了研究,以解决诸如解码复杂度和信道损伤等实际问题。我们研究低解码复杂度的空时分组码(STBC),这是一种流行的时空码子类,用于准静态频率平坦衰落MIMO信道。因此,时空码矩阵被设计为允许将发射的符号分成用于解码的组。我们称这些代码为多组可解码STBC。然后提出了一种新的多组可解码STBC,称为正交嵌入时空(OEST)码。介绍了等效信道,通用解码器和OEST码的最大互信息。基于OEST代码,做出了以下贡献:(1)表明,OEST代码包含了现有的正交,准正交和循环STBC。因此,OEST代码的结果可以容易地应用于这些代码。 (2)新的STBC,称为半正交代数时空(SAST)码,是从OEST码衍生而来的。 SAST码是偶数个天线的速率一,全分集,四组可解码,时延最优。 SAST代码几乎可以实现多输入单输出通道的容量。 (3)OEST码的框架适用于现有的单符号可解码码,例如最小解码复杂度准正交STBC(MDC-QSTBC)和坐标交织正交设计,以及4组准正交STBC。解决了这些代码的几个开放性问题,包括等效信道,通用解码器,符号错误率性能分析和最佳信号旋转。另外,MDC-QSTBC被显示为使用有限反馈的天线选择来实现完全分集。我们还考虑了使用正交频分复用(OFDM)进行频率选择衰落信道的MIMO系统时空码设计。所得的代码称为空频代码。 OFDM系统的性能受载波间干扰的严重影响,这是由发射机和接收机的载波振荡器之间的频率偏移引起的。我们分析性地量化了由于频率偏移而导致的空频代码的性能损失。为了有效减轻频率偏移的影响,提出了一种新的类空频码,称为载波间干扰自消除空频(ISC-SF)码。

著录项

  • 作者

    Dao, Dung Ngoc.;

  • 作者单位

    University of Alberta (Canada).;

  • 授予单位 University of Alberta (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 165 p.
  • 总页数 165
  • 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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