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Noncoherent Detection Schemes for Multi-User/Multi-Node Communication Systems.

机译:多用户/多节点通信系统的非相干检测方案。

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摘要

We design and analyze noncoherent detection schemes for multi-user/multi-node communication systems where neither the transmitters nor the receiver knows the channel. First, we propose differential decoding schemes for two-user MIMO systems based on orthogonal space-time block codes (OSTBCs). We derive low complexity differential decoders for users with two transmit antennas. We also present differential decoding schemes that achieve full diversity, perform significantly better than the existing schemes, and work for any square OSTBC, but need higher decoding complexity compared to our low complexity decoders. Moreover, we analyze the diversity of the proposed schemes. To the best of our knowledge, our low complexity schemes are the first low complexity differential schemes for multi-user systems.;We then propose differential decoding schemes for asynchronous multi-user MIMO systems based on OSTBCs. We derive novel low complexity differential decoders by performing interference cancelation in time. The decoding complexity of these schemes grows linearly with the number of users. We also present differential decoding schemes that perform significantly better than our low complexity decoders and outperform the existing synchronous differential schemes but require higher decoding complexity compared to our low complexity decoders. The proposed schemes work for any square OSTBC, any number of users, and any number of receive antennas. Furthermore, we analyze the diversity of the proposed schemes and derive conditions under which our schemes provide full diversity. To the best of our knowledge, the proposed differential detection schemes are the first differential schemes for asynchronous multi-user systems.;Finally, we present novel distributed beamforming (DBF) algorithms using feedback control based on Tree-Structured Vector Quantization (TSVQ). We develop TSVQ-based DBF algorithms for static channels. To the best of our knowledge, the proposed algorithms are the first deterministic DBF methods that can feed back more than 1 bit per time slot for faster phase synchronization. We analytically prove that our TSVQ-based DBF algorithms attain phase synchronization in probabilistic senses. Moreover, we modify our TSVQ-based DBF algorithms to enable them to track time-varying channels without the knowledge of the channel. Simulation results demonstrate that our algorithms significantly outperform the existing adaptive DBF algorithms for static and time-varying channels.
机译:我们设计和分析了针对多用户/多节点通信系统的非相干检测方案,其中发送器和接收器都不知道信道。首先,我们提出了基于正交空时分组码(OSTBC)的两用户MIMO系统的差分解码方案。我们为具有两个发射天线的用户提供了低复杂度的差分解码器。我们还提出了差分解码方案,该方案可实现完全分集,比现有方案的性能明显好得多,并且适用于任何方形OSTBC,但是与我们的低复杂度解码器相比,它需要更高的解码复杂度。此外,我们分析了所提出方案的多样性。据我们所知,我们的低复杂度方案是第一个用于多用户系统的低复杂度差分方案。然后,我们提出了基于OSTBC的异步多用户MIMO系统的差分解码方案。通过及时执行干扰消除,我们得出了新颖的低复杂度差分解码器。这些方案的解码复杂度随着用户数量线性增长。我们还提出了差分解码方案,该方案的性能明显优于我们的低复杂度解码器,并且性能优于现有的同步差分方案,但与我们的低复杂度解码器相比,它需要更高的解码复杂度。拟议的方案适用于任何方形OSTBC,任意数量的用户和任意数量的接收天线。此外,我们分析了所提出方案的多样性,并推导了我们的方案提供完全多样性的条件。据我们所知,提出的差分检测方案是异步多用户系统的第一个差分方案。最后,我们提出了基于树结构矢量量化(TSVQ)的使用反馈控制的新型分布式波束成形(DBF)算法。我们针对静态通道开发了基于TSVQ的DBF算法。据我们所知,所提出的算法是第一种确定性DBF方法,该方法可以在每个时隙反馈1位以上的比特,以实现更快的相位同步。我们通过分析证明,我们基于TSVQ的DBF算法在概率意义上实现了相位同步。此外,我们修改了基于TSVQ的DBF算法,以使其能够在不了解频道的情况下跟踪时变频道。仿真结果表明,对于静态和时变信道,我们的算法明显优于现有的自适应DBF算法。

著录项

  • 作者

    Poorkasmaei, Sina.;

  • 作者单位

    University of California, Irvine.;

  • 授予单位 University of California, Irvine.;
  • 学科 Electrical engineering.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 127 p.
  • 总页数 127
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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