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Exploiting diversity across space, time and frequency for high-rate communications.

机译:在空间,时间和频率上利用多样性来实现高速率通信。

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摘要

High data-rate and high reliability are two long-term objectives in digital communications theory and practice. This thesis discusses new approaches enabling communications systems to have both high spectral efficiency and high reliability without the need of having channel state information in the transmitters.; This thesis introduces the concept and structure of linear dispersion codes (LDC). This thesis proposes and analyzes a class of rectangular information lossless linear dispersion codes, which is termed uniform linear dispersion codes (U-LDC) and can be used for 2-dimensional channels with a number of advantages.; This thesis proposes and analyzes linear dispersion coded orthogonal frequency division multiplexing (LDC-OFDM) and linear dispersion coded single carrier modulation division multiplexing (LDC-SCM) for jointly exploiting time and frequency diversity in time varying frequency selective channels. Both LDC-OFDM and LDC-SCM may be applied to both wireline and wireless communications. Lower complexity approaches, double linear transformation coded OFDM and linear transformation coded SCM, are also proposed.; This thesis proposes and analyzes high-rate diversity approaches over space, time, and frequency dimensions for MIMO-OFDM systems. The proposed coded systems include linear dispersion space-time-frequency codes (LD-STFC), double linear dispersion space-time-frequency codes (DLD-STFC), and multiple-input multiple-output LDC-OFDM (MIMO-LDC-OFDM). This thesis introduces two diversity concepts for 3-dimensional codes: per dimension diversity order and per dimension symbol-wise diversity order; and provides a sufficient condition for DLD-STFC to achieve full symbol-wise diversity order in spite of the order of the two CDC stages. This thesis also investigates how much gain can be obtained using the combination of CDC and forward error correction (FEC) for STFC designs.; This thesis proposes coordinate-interleaving as a general principle for high-rate block-based space-time code design, i.e., space-time coordinate interleaving linear dispersion codes (ST-CILDC). This thesis shows that ST-CILDC maintains the same upper bound diversity order as the corresponding conventional ST-LDC, and ST-CILDC may double the statistical diversity order over the corresponding ST-LDC with high probability. ST-CILDC systems may show either almost doubled upper bound average diversity order or extra coding advantage in time varying channels.
机译:高数据速率和高可靠性是数字通信理论和实践的两个长期目标。本文讨论了使通信系统既具有高频谱效率又具有高可靠性而无需在发射机中具有信道状态信息的新方法。本文介绍了线性色散码(LDC)的概念和结构。本文提出并分析了一类矩形信息无损线性色散码,称为统一线性色散码(U-LDC),可用于二维信道,具有许多优点。本文提出并分析了线性色散编码正交频分复用(LDC-OFDM)和线性色散编码单载波调制划分多路复用(LDC-SCM),以共同利用时变频率选择信道中的时间和频率分集。 LDC-OFDM和LDC-SCM均可应用于有线和无线通信。还提出了较低复杂度的方法,即双重线性变换编码的OFDM和线性变换编码的SCM。本文提出并分析了MIMO-OFDM系统在空间,时间和频率维度上的高速率分集方法。拟议的编码系统包括线性色散时空频率码(LD-STFC),双线性色散时空频率码(DLD-STFC)和多输入多输出LDC-OFDM(MIMO-LDC-OFDM) )。本文介绍了3维代码的两个分集概念:每维分集阶和每维符号向分集阶;尽管有两个CDC阶段的顺序,但它为DLD-STFC提供了完整的按符号分集顺序的条件。本文还研究了将CDC和前向纠错(FEC)结合用于STFC设计可以获得多少增益。本文提出了坐标交织作为高速率基于块的空时码设计的一般原理,即空时坐标交织线性弥散码(ST-CILDC)。本文表明,ST-CILDC的上限分集阶数与相应的常规ST-LDC保持相同,并且ST-CILDC可能比相应的ST-LDC的统计分集阶数高一倍。 ST-CILDC系统在时变信道中可能显示出几乎两倍的上限平均分集阶数或额外的编码优势。

著录项

  • 作者

    Wu, Jinsong.;

  • 作者单位

    Queen's University (Canada).;

  • 授予单位 Queen's University (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 255 p.
  • 总页数 255
  • 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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