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Non-coherent and partially coherent space-time constellations.

机译:非相干和部分相干的时空星座。

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摘要

With the rapid growth of wireless networks and multimedia applications, next generation cellular systems are expected to support data rates that are orders of magnitude higher than those currently available. Due to the limited amount of battery power in the mobile handsets, more power efficient signaling techniques need to be developed. Outdoor cellular systems are also required to be able to operate in rapidly fading environments. Exploiting multiple transmit and receive antennas to meet some or all of the above requirements have been recently proposed and extensively investigated. Nevertheless, designing signal constellations and codes that meet all of the above requirements and have practical design and decoding complexities still remains a challenge.; In this work, we consider the code and constellation design problem for digital communication in a Rayleigh fading environment using a multiple-antenna system. We assume that the channel coefficients are not known at the transmitter, and are only partially known at the receiver. Inspired by the Stein's lemma, we propose to use the Kullback-Leibler distance between conditional distributions to design space-time constellations. We show that this distance, while being relatively easy to derive and work with, provides an efficient performance and design criterion.; Using the KL-based design criterion, we construct codes and constellations for multiple-antenna systems which can be decoded non-coherently or in the presence of channel estimation errors, and thus are suitable for fast block fading scenarios. We also show that the new constellations are more efficient than the existing designs for non-coherent systems at low signal-to-noise ratios or high spectral efficiencies. The new partially coherent constellations, on the other hand, provide significant performance improvements when the estimation variance is comparable to the reciprocal of the signal-to-noise ratio.; We also propose a recursive construction for real unitary constellations with low decoding complexity, derive a KL-based design criterion and construction method for partially coherent coded modulation, and design partially coherent constellations for a multi-carrier system in a multipath environment. We show that, in the presense of channel estimation errors, the proposed codes and constellations achieve significant performance improvement over the conventional coding and modulation techniques.
机译:随着无线网络和多媒体应用的快速增长,下一代蜂窝系统有望支持比当前可用数据速率高几个数量级的数据速率。由于移动手持机中的电池电量有限,因此需要开发更多的省电信号技术。还要求室外蜂窝系统能够在快速衰落的环境中运行。最近已经提出并广泛研究了利用多个发射和接收天线以满足上述一些或全部要求。然而,设计满足上述所有要求并具有实际设计和解码复杂性的信号星座图和代码仍然是一个挑战。在这项工作中,我们考虑了使用多天线系统在瑞利衰落环境中进行数字通信的代码和星座设计问题。我们假设信道系数在发射机处未知,而在接收机处仅部分已知。受斯坦因引理的启发,我们建议使用条件分布之间的Kullback-Leibler距离来设计时空星座。我们表明,该距离虽然相对容易得出和使用,但提供了有效的性能和设计标准。使用基于KL的设计标准,我们为多天线系统构建了可以非相干解码或存在信道估计误差的情况下编码和星座图,因此适用于快速块衰落场景。我们还表明,在低信噪比或高频谱效率的情况下,新星座比非相干系统的现有设计更有效。另一方面,当估计方差与信噪比的倒数相当时,新的部分相干星座图可显着改善性能。我们还提出了一种具有低解码复杂度的真实unit星座的递归构造,推导了基于KL的部分相干编码调制的设计准则和构造方法,并为多径环境中的多载波系统设计了部分相干星座。我们表明,在信道估计误差的存在下,与常规编码和调制技术相比,所提出的代码和星座图实现了显着的性能改进。

著录项

  • 作者

    Borran, Mohammed Jaber.;

  • 作者单位

    Rice University.;

  • 授予单位 Rice University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 161 p.
  • 总页数 161
  • 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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