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Predictive wireless antenna selection for high mobility conditions.

机译:针对高移动性条件的预测性无线天线选择。

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摘要

Accurate channel knowledge is indispensable to the practical success of channel-aware wireless communication technologies. However, channel estimates obtained from pilot symbols rapidly become outdated due to fast time variations of multipath fading channels. To reduce system cost, antenna subset selection reduces radio frequency (RF) chain components. For systems selecting a subset of a plurality of antennas for reception, this outdated channel information is a significant impediment to selection and data decoding reliability. In this thesis, training-based schemes for antenna selection (AS) for time-varying channels which account for practical constraints such as training, packetization and antenna switching time are proposed based on discrete prolate spheroidal sequences. They only operate with knowledge or estimates of the Doppler frequency and the channel signal-to-noise ratio (SNR), but do not require detailed statistical correlation knowledge.;The second part of this thesis investigates the more general case of selecting a subset of a plurality of receive antennas. A new pilot-based receive antenna subset selection algorithm for time-varying frequency-flat channels is presented. The proposed AS algorithm is shown to outperform AS methods based on Fourier prediction/estimation as well as SIMO systems with perfect channel knowledge. Analysis of MPSK and quadrature amplitude modulation (MQAM) SEP for systems with receive AS is provided.;The combination of AS and orthogonal frequency division multiplexing (OFDM) over the more realistic time-varying and frequency-selective fading scenario is examined in the final part. Training schemes for receive AS using packet-rate antenna switching for SIMO and multiple input-multiple output (MIMO) OFDM systems are developed. The suggested schemes exhibit a superior performance over AS methods using either linear interpolation/extrapolation or Fourier prediction/estimation techniques.;A pilot-based AS scheme for time-varying frequency-flat channels for single input-multiple output (SIMO) systems selecting one of a plurality of antennas using packet or symbol-rate antenna switching is first proposed. It is demonstrated that the presented scheme provides significant performance gain over AS methods using Fourier-based orthogonal training as well as over single antenna systems with perfect channel knowledge. Analytical expressions for the symbol error probability (SEP) of M-ary phase-shift keying (MPSK) for systems employing the suggested techniques are provided.
机译:准确的信道知识对于知道信道的无线通信技术的实际成功是必不可少的。然而,由于多径衰落信道的快速时间变化,从导频符号获得的信道估计迅速变得过时。为了降低系统成本,天线子集选择减少了射频(RF)链组件。对于选择多个天线的子集进行接收的系统,该过时的信道信息严重阻碍了选择和数据解码的可靠性。本文提出了一种基于时变信道的基于训练的天线选择(AS)方案,该方案考虑了离散扁长球体序列,并考虑了训练,分组化和天线切换时间等实际约束。它们仅在了解或估计多普勒频率和信道信噪比(SNR)的情况下运行,而无需详细的统计相关知识。本论文的第二部分研究了选择以下子集的更一般情况:多个接收天线。提出了一种针对时变频率平坦信道的基于导频的新型接收天线子集选择算法。结果表明,所提出的AS算法优于基于傅立叶预测/估计以及具有完善信道知识的SIMO系统的AS方法。提供了具有接收AS的系统的MPSK和正交幅度调制(MQAM)SEP的分析。最后,研究了AS和正交频分复用(OFDM)在更现实的时变和频率选择衰落场景下的组合部分。针对SIMO和多输入多输出(MIMO)OFDM系统,开发了使用分组速率天线切换的接收AS的训练方案。建议的方案比使用线性内插/外推或傅里叶预测/估计技术的AS方法表现出更好的性能。基于导频的AS方案,用于单输入多输出(SIMO)系统时变频率平坦信道的选择首先提出了使用分组或符号率天线切换的多个天线中的一个。结果表明,与使用基于傅立叶的正交训练的AS方法以及具有完善信道知识的单天线系统相比,该方案可显着提高性能。提供了采用建议技术的系统的M元相移键控(MPSK)的符号错误概率(SEP)的解析表达式。

著录项

  • 作者

    Abou Saleh, Hassan.;

  • 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 2013
  • 页码 193 p.
  • 总页数 193
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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