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Performance analysis of DPSK systems with MIMO employing EGC over wireless fading channels.

机译:在无线衰落信道上采用EGC的MIMO DPSK系统的性能分析。

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摘要

The proliferation of digital wireless communication services has increased the congestion of the available radio spectrum. In addition to that, wireless communications are encountered by multipath channel fading. To alleviate the scarcity of the radio spectrum and multipath channel fading, attention in this dissertation is placed on differentially coherent phase shift keying (DPSK) systems with equal gain combining (EGC) diversity reception. DPSK systems are capable of achieving high spectral efficiency with adequate performance over wireless fading channels. Several wireless communication systems have adopted DPSK such as the time division multiple access (TDMA) version of the North American Digital Cellular (NADC) system. DPSK systems together with multiple-input multiple-output (MIMO) antenna systems have the potential to further improve the diversity gain and increase the spectral efficiency in wireless communication systems.; This dissertation analyzes the error rates of a variety of wireless digital techniques over fading channels with particular emphasis on the DPSK systems. This work leads to a useful framework to analyze the error rates of digital techniques over fading channels, and the proposal of a reduced-complexity and low-cost MIMO system for wireless communications. This dissertation also simplifies and generalizes the previous results of the error rates of wireless communication techniques over independent and correlated fading without resorting to approximations. In addition to that, this study investigates the impact of fading correlation and imperfect phase recovery on the performance of noncoherent and coherent digital wireless communication systems respectively. From practical point of view, this research study is expected to be helpful in the design of the practical radio communication receivers.; First, this research starts with a study of the DPSK systems over independent and correlated fading channels. We present two approaches to analyze the average bit error probability (BEP) of differential quaternary phase shift keying (DQPSK) systems with equal gain combining (EGC) diversity reception over fading channels. The first approach relies on the integral definition of the associated Legendre functions, which can lead to nite-series closed-form expressions for the average BEP of DQPSK over L independent Rayleigh and Nakagami-m, when the product Lm is integer, fading channels. In the second approach, we propose a finite sum of a finite-range integral for the average BEP of DQPSK with EGC over arbitrarily Nakagami- m and Rician fading channels. Besides, a finite-series closed-form expression is given for the average BEP of differential binary phase shift keying (DBPSK) with EGC over independent Rician fading channels. It is observed that the performance degradation due to the correlation among the diversity branches in Rician fading channels is severer than that in Nakagami- m fading channels as a result of the presence of the specular component.; Second, we propose and analyze a reduced-complexity and low-cost DPSK system with MIMO employing EGC (MIMO EGC) diversity reception. The proposed structure provides a reduced-complexity and low-cost receiver for MIMO systems compared to the coherent phase shift keying system (PSK) with MIMO employing maximal ratio combining (MIMO MRC). The average BEP for DBPSK and DQPSK with MIMO EGC over independent Rayleigh fading channels has been derived. The associated Legendre functions approach has been used to analyze the average BEP of DQPSK with MIMO EGC. Finite closed-form expressions for the average BEP of DBPSK and DQPSK are presented.; Third, we present another useful utilization of the associated Legendre functions approach. The associated Legendre functions approach is devoted to analyze the performance of coherent PSK systems over fading channels in the presence of imperfect phase recovery. We address an evaluation (without any kind of approximation) for the ave
机译:数字无线通信服务的激增增加了可用无线电频谱的拥塞。除此之外,多路径信道衰落会遇到无线通信。为了减轻无线电频谱的稀缺性和多径信道衰落,本文重点研究了具有等增益组合(EGC)分集接收的差分相干相移键控(DPSK)系统。 DPSK系统能够在无线衰落信道上以适当的性能实现高频谱效率。几种无线通信系统已经采用了DPSK,例如北美数字蜂窝(NADC)系统的时分多址(TDMA)版本。 DPSK系统与多输入多输出(MIMO)天线系统一起具有进一步提高分集增益并提高无线通信系统频谱效率的潜力。本文分析了衰落信道上各种无线数字技术的误码率,重点研究了DPSK系统。这项工作导致了一个有用的框架,可以分析衰落信道上的数字技术的误码率,并提出了一种用于无线通信的降低复杂性和低成本的MIMO系统的建议。本论文还简化和概括了在不求近似的情况下,无线通信技术在独立衰落和相关衰落上的误码率先前的结果。除此之外,本研究还分别研究了衰落相关和不完善的相位恢复对非相干和相干数字无线通信系统性能的影响。从实用的角度来看,这项研究有望对实用的无线通信接收机的设计有所帮助。首先,这项研究从研究独立和相关衰落信道上的DPSK系统开始。我们提出了两种方法来分析衰落信道上具有等增益组合(EGC)分集接收的差分四元相移键控(DQPSK)系统的平均误码率(BEP)。第一种方法依赖于相关联的Legendre函数的整数定义,当乘积Lm为整数衰落信道时,可以得出L独立的Rayleigh和Nakagami-m上DQPSK的平均BEP的nite系列闭式表达式。在第二种方法中,我们针对任意Nakagamim和Rician衰落信道上带有EGC的DQPSK的平均BEP提出了有限范围积分的有限和。此外,给出了在独立的Rician衰落信道上,带有EGC的差分二进制相移键控(DBPSK)的平均BEP的有限级闭式表达式。可以看到,由于镜面反射分量的存在,由于Rician衰落信道中的分集分支之间的相关性,导致性能下降比中中衰落信道中的严重。其次,我们提出并分析了采用EGC(MIMO EGC)分集接收技术的,具有MIMO的复杂度低且低成本的DPSK系统。与具有采用最大比率组合(MIMO MRC)的MIMO的相干相移键控系统(PSK)相比,所提出的结构为MIMO系统提供了降低的复杂度和低成本的接收器。推导了在独立瑞利衰落信道上具有MIMO EGC的DBPSK和DQPSK的平均BEP。相关的Legendre函数方法已用于分析具有MIMO EGC的DQPSK的平均BEP。给出了DBPSK和DQPSK平均BEP的有限闭式表达式。第三,我们提出了有关Legendre函数方法的另一种有用利用。相关的Legendre函数方法专门用于分析在相位恢复不完善的情况下,衰落信道上相干PSK系统的性能。我们针对ave进行评估(没有任何近似)

著录项

  • 作者单位

    The University of Texas at Arlington.$bElectrical Engineering.;

  • 授予单位 The University of Texas at Arlington.$bElectrical Engineering.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 129 p.
  • 总页数 129
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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