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Performance evaluation of communication systems with transmit diversity.

机译:具有发射分集的通信系统的性能评估。

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摘要

Transmit diversity is a key technique to combat fading with multiple transmit antennae for next-generation wireless communication systems. Space-time block code (STBC) is a main component of this technique. This dissertation consists of four parts: the first three discuss performance evaluation of STBCs in various circumstances, the fourth outlines a novel differential scheme with full transmit diversity.; In the first part, closed-form expressions for the bit error rate (BER) are derived for STBC based on Alamouti's scheme and utilizing M-ary phase shift keying (MPSK) modulation. The analysis is carried out for a slow, flat Rayleigh fading channel with coherent detection and with non-coherent differential encoding/decoding. The BER expression for coherent detection is exact. But for differential detection it is an approximation appropriate for a high signal-to-noise ratio. Numerical results are provided for analysis and simulations for BPSK and QPSK modulations.; A signal-to-noise ratio loss of approximately 3 dB always occurs with conventional differential detection for STBC compared to coherent detection. In the second part of this dissertation, a multiple-symbol differential detection (MSDD) technique is proposed for MPSK STBCs, which greatly reduces this performance loss by extending the observation interval for decoding. The technique uses maximum likelihood block sequence detection instead of traditional block-by-block detection and is carried out on the slow, flat Rayleigh fading channel. A generalized decision metric for an observation interval of N blocks is derived. It is shown that for a moderate number of blocks, MSDD provides more than 1.0 dB performance improvement corresponding to conventional differential detection. In addition, a closed-form pairwise error probability for differential BPSK STBC is derived for an observation interval of N blocks, and an approximate BER is obtained to evaluate the performance.; In the third part, the BER performance of STBC over a spatio-temporal correlated channel with coherent and noncoherent detection is illustrated, where a general space-time correlation model is utilized. The simulation results demonstrate that spatial correlation negatively effects the performance of the STBC scheme with differential detection but temporal correlation positively impacts it. However, with coherent detection, spatial correlation still has negative effect on the performance but temporal correlation has no impact on it.; In the final part of this dissertation, a differential detection scheme for DS/CDMA MIMO link is presented. The transmission provides for full transmit and receive diversity gain using a simple detection scheme, which is a natural extension of differential detection combined with an orthogonal transmit diversity (OTD) approach. A capacity analysis for this scheme is illustrated.
机译:对于下一代无线通信系统,发射分集是一种通过多发射天线来对抗衰落的关键技术。时空分组码(STBC)是此技术的主要组成部分。本文由四个部分组成:前三部分讨论了STBC在各种情况下的性能评估,第四部分概述了具有完全发射分集的新型差分方案。在第一部分中,基于Alamouti方案并利用M元相移键控(MPSK)调制,为STBC导出了误码率(BER)的闭式表达式。对具有相干检测和非相干差分编码/解码的缓慢,平坦的瑞利衰落信道进行分析。用于相干检测的BER表达式准确无误。但是对于差分检测,它是适合于高信噪比的近似值。提供了数值结果用于BPSK和QPSK调制的分析和仿真。与相干检测相比,传统的STBC差分检测总是出现大约3 dB的信噪比损失。在本文的第二部分,提出了一种针对MPSK STBC的多符号差分检测(MSDD)技术,该技术通过扩展解码观察间隔来大大降低这种性能损失。该技术使用最大似然块序列检测代替传统的逐块检测,并在缓慢,平坦的瑞利衰落信道上进行。得出N个块的观察间隔的广义决策度量。结果表明,对于中等数量的块,MSDD可以提供比传统差分检测高出1.0 dB以上的性能。另外,针对N个块的观察间隔,导出差分BPSK STBC的闭式成对错误概率,并获得近似BER以评估性能。在第三部分中,说明了时空相关信道上具有相干和非相干检测的STBC的BER性能,其中使用了一般的时空相关模型。仿真结果表明,空间相关性对差分检测的STBC方案的性能产生负面影响,而时间相关性则对其产生负面影响。然而,在相干检测中,空间相关仍然对性能有负面影响,而时间相关则对性能没有影响。在本文的最后,提出了一种针对DS / CDMA MIMO链路的差分检测方案。传输使用简单的检测方案提供完整的发射和接收分集增益,这是差分检测与正交发射分集(OTD)方法相结合的自然扩展。说明了该方案的容量分析。

著录项

  • 作者

    Gao, Chunjun.;

  • 作者单位

    New Jersey Institute of Technology.;

  • 授予单位 New Jersey Institute of Technology.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 110 p.
  • 总页数 110
  • 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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