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Space-time coding schemes for wireless communications over flat fading channels.

机译:用于在平坦衰落信道上进行无线通信的时空编码方案。

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摘要

The increasing demand for higher data rates and higher quality in wireless communications has motivated the use of multiple antenna elements at both the transmitter and the receiver sides in a wireless link. The problem discussed in our research is the development of fundamental space-time (ST) coding and modulation methods to achieve the gains provided by multiple antennas, in terms of both improved robustness of the link and a higher spectral efficiency. We focus on a point-to-point wireless environment, in which the channel is modeled as flat fading, and channel knowledge is not available at the transmitter. Several new and improved schemes tailored for different applications are proposed.; We first consider the design of ST trellis codes that reduce the probability of error without loss of spectral efficiency. It is found that the typical assumption of high signal-to-noise ratio (SNR) and, consequently, traditional design criteria are invalid in certain situations. Analyzing pair-wise error probability, we derive two sets of tighter design criteria for low and moderate SNR regions, respectively. New ST trellis codes optimized for moderate SNR are provided via a computer search. To avoid the prohibitively high complexity of searching for good codes with a larger number of transmit antennas and higher-level modulation, we introduce a novel systematic code construction method, diagonal block ST coding. This two-step approach demonstrates promising results at the commonly assumed high SNR.; We then conduct an intensive study into generalized layered ST architecture that allows a tradeoff between error probability and spectral efficiency. Our goal is to enhance the tradeoff by further reducing the error probability. Techniques with no or little increase in receiver complexity, such as optimal power allocation and optimal decoding order, are introduced. A hard-decision iterative decoding algorithm that significantly enhances the system performance is also proposed.; Finally, we consider the design of ST techniques that avoid channel estimation at the receiver, but with minimal loss in error performance. A new differential ST modulation scheme based on orthogonal ST block codes with square codeword matrices is introduced. The important difference from previous differential ST modulation schemes is the use of multiple amplitudes. This makes our scheme more power efficient. We then introduce a joint design of channel coding and general differential ST modulation, called trellis-coded differential unitary space-time modulation. Several examples that offer a good tradeoff between the coding advantage and trellis complexity are presented.
机译:在无线通信中对更高数据速率和更高质量的日益增长的需求促使在无线链路中的发送器和接收器侧使用多个天线元件。我们的研究中讨论的问题是,为了提高链路的鲁棒性和更高的频谱效率,需要开发基本的空时(ST)编码和调制方法,以实现多天线提供的增益。我们专注于点对点无线环境,在该环境中,信道被建模为平坦衰落,并且在发射机处信道知识不可用。提出了几种针对不同应用量身定制的新的和改进的方案。我们首先考虑ST网格代码的设计,这种代码可以减少错误的可能性而又不会降低频谱效率。发现高信噪比(SNR)的典型假设以及因此的传统设计标准在某些情况下是无效的。分析成对错误概率,我们分别得出了针对低和中等SNR区域的两组更严格的设计标准。通过计算机搜索提供了针对中等SNR优化的新ST格码。为了避免使用大量发射天线和更高级别的调制来搜索良好代码的过高复杂性,我们引入了一种新颖的系统代码构造方法,即对角块ST编码。这种分两步的方法展示了在通常假定的高SNR情况下的可喜结果。然后,我们对广义分层ST架构进行了深入研究,该架构允许在错误概率和频谱效率之间进行权衡。我们的目标是通过进一步降低错误概率来增强权衡。引入了没有或几乎没有增加接收机复杂度的技术,例如最佳功率分配和最佳解码顺序。还提出了一种硬决策迭代解码算法,该算法可显着提高系统性能。最后,我们考虑了ST技术的设计,该技术可避免在接收机处进行信道估计,但在错误性能方面的损失最小。介绍了一种基于正交ST块码和平方码字矩阵的差分ST调制方案。与以前的差分ST调制方案的重要区别在于使用了多个幅度。这使我们的方案更加节能。然后,我们介绍了信道编码和通用差分ST调制的联合设计,称为网格编码差分unit时空调制。给出了几个在编码优势和网格复杂度之间进行权衡的示例。

著录项

  • 作者

    Tao, Meixia.;

  • 作者单位

    Hong Kong University of Science and Technology (People's Republic of China).;

  • 授予单位 Hong Kong University of Science and Technology (People's Republic of China).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 118 p.
  • 总页数 118
  • 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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