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Wireless multiuser communication systems: diversity receiver performance analysis, GSMuD design, and fading channel simulator

机译:无线多用户通信系统:分集接收机性能分析,GSMuD设计和衰落信道模拟器

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摘要

Multipath fading phenomenon is central to the design and analysis of wireless communication systems including multiuser systems. If untreated, the fading will corrupt the transmitted signal and often cause performance degradations such as increased communication error and decreased data rate, as compared to wireline channels with little or no multipath fading. On the other hand, this multipath fading phenomenon, if fully utilized, can actually lead to system designs that provide additional gains in system performance as compared to systems that experience non-fading channels.;The central question this thesis tries to answer is how to design and analyze a wireless multiuser system that takes advantage of the benefits the diversity multipath fading channel provides. Two particular techniques are discussed and analyzed in the first part of the thesis: quadrature amplitude modulation (QAM) and diversity receivers, including maximal ratio combining (MRC) and generalized selection combining (GSC). We consider the practical case of imperfect channel estimation (ICE) and develop a new decision variable (DV) of MRC receiver output for M-QAM. By deriving its moment generating function (MGF), we obtain the exact bit error rate (BER) performance under arbitrary correlated Rayleigh and Rician channels, with ICE. GSC provides a tradeoff between receiver complexity and performance. We study the effect of ICE on the GSC output effective SNR under generalized fading channels and obtain the exact BER results for M-QAM systems. The significance of this part lies in that these results provide system designers means to evaluate how different practical channel estimators and their parameters can affect the system\u27s performance and help them distribute system resources that can most effectively improve performance.;In the second part of the thesis, we look at a new diversity technique unique to multiuser systems under multipath fading channels: the multiuser diversity. We devise a generalized selection multiuser diversity (GSMuD) scheme for the practical CDMA downlink systems, where users are selected for transmission based on their respective channel qualities. We include the effect of ICE in the design and analysis of GSMuD. Based on the marginal distribution of the ranked user signal-noise ratios (SNRs), we develop a practical adaptive modulation and coding (AMC) scheme and equal power allocation scheme and statistical optimal 1-D and 2-D power allocation schemes, to fully exploit the available multiuser diversity. We use the convex optimization procedures to obtain the 1-D and 2-D power allocation algorithms, which distribute the total system power in the \u22waterfilling\u22 fashion alone the user (1-D) or both user and time (2-D) for the power-limited and energy-limited system respectively. We also propose a normalized SNR based GSMuD scheme where user access fairness issues are explicitly addressed. We address various fairness-related performance metrics such as the user\u27s average access probability (AAP), average access time (AAT), and average wait time (AWT) in the absolute- and normalized-SNR based GSMuD. These metrics are useful for system designers to determine parameters such as optimal packet size and delay constraints.;We observe that Nakakagami-m fading channel model is widely applied to model the real world multipath fading channels of different severity. In the last part of the thesis, we propose a Nakagami-m channel simulator that can generate accurate channel coefficients that follow the Nakagami-m model, with independent quadrature parts, accurate phase distribution and arbitrary auto-correlation property. We demonstrate that the proposed simulator can be extremely useful in simulations involving Nakagami-m fading channel models, evident from the numerous simulation results obtained in earlier parts of the thesis where the fading channel coefficients are generated using this proposed simulator.
机译:多径衰落现象对于包括多用户系统的无线通信系统的设计和分析至关重要。与未经多径衰落或几乎没有多径衰落的有线信道相比,如果不加以处理,则衰落将破坏传输的信号并经常导致性能下降,例如通信错误增加和数据速率降低。另一方面,这种多径衰落现象如果得到充分利用,实际上会导致系统设计比经历非衰落信道的系统提供更多的系统性能提升。设计和分析无线多用户系统,该系统利用了分集多径衰落信道提供的优势。论文的第一部分讨论和分析了两种特殊的技术:正交幅度调制(QAM)和分集接收机,包括最大比合并(MRC)和广义选择合并(GSC)。我们考虑了不完美信道估计(ICE)的实际情况,并为M-QAM开发了MRC接收机输出的新决策变量(DV)。通过推导其矩生成函数(MGF),我们可以利用ICE在任意相关的Rayleigh和Rician信道下获得精确的误码率(BER)性能。 GSC提供了接收机复杂度和性能之间的折衷方案。我们研究了ICE在广义衰落信道下对GSC输出有效SNR的影响,并获得了M-QAM系统的准确BER结果。这部分的意义在于,这些结果为系统设计人员提供了评估不同的实际信道估计器及其参数如何影响系统性能并帮助他们分配可以最有效地提高性能的系统资源的手段。在本文中,我们研究了一种在多径衰落信道下多用户系统独有的新分集技术:多用户分集。我们为实际的CDMA下行链路系统设计了一种通用选择多用户分集(GSMuD)方案,其中基于用户各自的信道质量选择要进行传输的用户。我们将ICE的影响纳入GSMuD的设计和分析中。基于排名的用户信噪比(SNR)的边际分布,我们开发了一种实用的自适应调制和编码(AMC)方案,等功率分配方案以及统计最优的一维和二维功率分配方案,利用可用的多用户多样性。我们使用凸优化过程来获得一维和二维功率分配算法,这些算法以用户(1-D)或用户和时间(2-D)的形式分配系统总功率。 )分别用于功率受限和能量受限的系统。我们还提出了基于归一化SNR的GSMuD方案,其中明确解决了用户访问公平性问题。我们讨论了各种与公平性相关的性能指标,例如基于GSMuD的绝对和归一化SNR中用户的平均访问概率(AAP),平均访问时间(AAT)和平均等待时间(AWT)。这些指标对于系统设计人员确定诸如最佳数据包大小和延迟约束之类的参数很有用。我们注意到,Nakakagami-m衰落信道模型已广泛应用于对不同严重程度的现实世界多路径衰落信道进行建模。在论文的最后部分,我们提出了一种Nakagami-m信道模拟器,该模拟器可以生成遵循Nakagami-m模型的准确信道系数,具有独立的正交部分,准确的相位分布和任意的自相关特性。我们证明了所提出的模拟器在涉及Nakagami-m衰落信道模型的仿真中非常有用,这可以从论文较早部分获得的大量仿真结果中看出,在该部分中,使用所提出的模拟器生成了衰落信道系数。

著录项

  • 作者

    Zhang, Dongbo;

  • 作者单位
  • 年度 2007
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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