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Signal acquisition and tracking for fixed wireless access multiple input multiple output orthogonal frequency division multiplexing.

机译:固定无线访问多输入多输出正交频分复用的信号采集和跟踪。

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摘要

The general objective of this proposed research is to design and develop signal acquisition and tracking algorithms for multiple input multiple output orthogonal frequency division multiplexing (MIMO-OFDM) systems for fixed wireless access applications. The algorithms are specifically targeted for systems that work in time division multiple access (TDMA) and frequency division multiple access (FDMA) frame modes. In our research, we first develop a comprehensive system model for a MIMO-OFDM system under the influence of the radio frequency (RF) oscillator frequency offset, sampling frequency (SF) offset, RF oscillator phase noise, frequency selective channel impairments and finally the additive white Gaussian noise (AWGN). We then develop the acquisition and tracking algorithms to estimate and track all these parameters. The acquisition and tracking algorithms are assisted by a preamble consisting of one or more training sequences and pilot symbol matrices. Along with the signal acquisition and tracking algorithms, we also consider design of the MIMO-OFDM preamble and pilot signals that enable the suggested algorithms to work efficiently.; Signal acquisition as defined in our research consists of time and RF synchronization, SF offset estimation and correction, phase noise estimation and correction and finally channel estimation. Signal tracking consists of RF, SF, phase noise and channel tracking. Time synchronization, RF oscillator frequency offset, SF oscillator frequency offset, phase noise and channel estimation and tracking are all research topics by themselves. A large number of studies have addressed these issues, but usually individually and for single-input single-output (SISO) OFDM systems. In the proposed research we present a complete suite of signal acquisition and tracking algorithms for MIMO-OFDM systems along with Cramer-Rao bounds for the SISO-OFDM case. In addition, we also derive the Maximum Likelihood (ML) estimates of the parameters for the SISO-OFDM case.; Our proposed research is unique from the existing literature in that it presents a complete receiver implementation for MIMO-OFDM systems and accounts for the cumulative effects of all possible acquisition and tracking errors on the bit error rate (BER) performance. The suggested algorithms and the pilot/training schemes may be applied to any MIMO OFDM system and are independent of the space-time coding techniques that are employed.
机译:这项提出的研究的总体目标是设计和开发用于固定无线接入应用的多输入多输出正交频分复用(MIMO-OFDM)系统的信号采集和跟踪算法。该算法专门针对以时分多址(TDMA)和频分多址(FDMA)帧模式工作的系统。在我们的研究中,我们首先在射频(RF)振荡器频率偏移,采样频率(SF)偏移,RF振荡器相位噪声,频率选择性信道损伤以及最终的影响下开发MIMO-OFDM系统的综合系统模型。加性高斯白噪声(AWGN)。然后,我们开发采集和跟踪算法以估计和跟踪所有这些参数。捕获和跟踪算法由包含一个或多个训练序列和导频符号矩阵的前同步码协助。除了信号采集和跟踪算法外,我们还考虑了MIMO-OFDM前导码和导频信号的设计,以使所建议的算法有效地工作。我们研究中定义的信号采集包括时间和RF同步,SF偏移估计和校正,相位噪声估计和校正以及最后的信道估计。信号跟踪包括RF,SF,相位噪声和信道跟踪。时间同步,RF振荡器频率偏移,SF振荡器频率偏移,相位噪声以及信道估计和跟踪本身都是研究主题。大量研究已经解决了这些问题,但通常是针对单个输入单输出(SISO)OFDM系统进行的。在提出的研究中,我们提出了一套完整的MIMO-OFDM系统信号采集和跟踪算法套件,以及针对SISO-OFDM情况的Cramer-Rao边界。此外,我们还推导了SISO-OFDM情况下参数的最大似然(ML)估计。我们提出的研究与现有文献不同,它为MIMO-OFDM系统提供了完整的接收器实施方案,并考虑了所有可能的采集和跟踪误差对误码率(BER)性能的累积影响。所建议的算法和导频/训练方案可以应用于任何MIMO OFDM系统,并且独立于所采用的空时编码技术。

著录项

  • 作者

    Mody, Apurva N.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 142 p.
  • 总页数 142
  • 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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