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Space-Time Diversity for CDMA Systems over Frequency-Selective Fading Channels.

机译:选频衰落信道上CDMA系统的时空分集。

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摘要

Supporting the expected high data rates required by wireless Internet and high-speed multimedia services is one of the basic requirements in broadband mobile wireless systems. However, the achievable capacity and data rate of wireless communication systems are limited by the time-varying nature of the channel. Efficient techniques for combating the time-varying effects of wireless channels can be achieved by utilizing different forms of diversity. In recent years, transmit diversity based on space-time coding (STC) has received more attention as an effective technique for combating fading. On the other hand, most existing space-time diversity techniques have been developed for flat-fading channels. Given the fact that wireless channels are generally frequency-selective, in this thesis, we aim to investigate the performance of space-time diversity schemes for wideband code-division multiple-access (WCDMA) systems over frequency-selective fading channels. The proposed receiver in this case is a rake-type receiver, which exploits the path diversity inherent to multipath propagation. Then, a decorrelator detector is used to mitigate the multiple access interference (MAI) and the known near-far problem. We derive the bit error rate (BER) expression over frequency-selective fading channels considering both the fast and slow fading cases. Finally, we show that our proposed receiver achieves the full system diversity through simulation and analytical results.;Considering that training estimation techniques suffer either from low spectral efficiency (i.e., conventional training approach) or from high pilot power consumption (i.e., superimposed training-based approach), in the last part of the thesis, we present an iterative joint detection and estimation (JDE) using the expectation-maximization (EM) algorithm for MIMO CDMA systems over frequency-selective fading channels. We also derive a closed-form expression for the optimized weight coefficients of the EM algorithm, which was shown to provide significant performance enhancement relative to the conventional equal-weight EM-based signal decomposition. Finally, our simulation results illustrate that the proposed receiver achieves near-optimum performance with modest complexity using very few training symbols.;Most of the work conducted in this area considers perfect knowledge of the channel at the receiver. Hence, channel identification brings significant challenges to multiple-input multiple-output (MIMO) CDMA systems. In light of this, we propose a channel estimation and data detection scheme based on the superimposed training-based approach. The proposed scheme enhances the performance by eliminating the MAI from both the channel and data estimates by employing two decorrelators; channel and data decorrelators. The performance of the proposed estimation technique is investigated over frequency-selective slow fading channels where we derived a closed-form expression for the BER as a function of the number of users, K, the number resolvable paths, L, and the number of receive antennas, V. Finally, our proposed scheme is shown to be more robust to channel estimation errors. Furthermore, both the analytical and simulation results indicate that the full system diversity is achieved.
机译:支持无线Internet和高速多媒体服务所需的预期高数据速率是宽带移动无线系统的基本要求之一。然而,无线通信系统可达到的容量和数据速率受到信道的时变特性的限制。通过利用不同形式的分集,可以实现有效的技术来应对无线信道的时变效应。近年来,基于空时编码(STC)的发射分集作为一种有效的抗衰落技术已受到越来越多的关注。另一方面,大多数现有的时空分集技术已经被开发用于平坦衰落信道。鉴于无线信道通常是频率选择性的,因此,本文旨在研究频率选择性衰落信道上的宽带码分多址(WCDMA)系统的时空分集方案的性能。在这种情况下,建议的接收机是瑞克型接收机,它利用了多径传播固有的路径分集。然后,使用解相关器检测器来减轻多址干扰(MAI)和已知的远距离问题。考虑到快衰落情况和慢衰落情况,我们推导了频率选择性衰落信道上的误码率(BER)表达式。最后,我们证明了我们提出的接收器通过仿真和分析结果实现了整个系统的多样性。考虑到训练估计技术的频谱效率低(即传统训练方法)或导频功耗高(即叠加训练,本文的最后一部分,我们提出了一种基于期望最大化(EM)算法的MIMO CDMA系统在频率选择性衰落信道上的迭代联合检测与估计(JDE)。我们还针对EM算法的优化权重系数导出了一个封闭形式的表达式,相对于传统的基于等权重EM的信号分解,该表达式可提供显着的性能增强。最后,我们的仿真结果表明,所提出的接收机使用很少的训练符号即可以适度的复杂度实现接近最佳的性能。该领域中的大多数工作都考虑了接收机上信道的完备知识。因此,信道识别给多输入多输出(MIMO)CDMA系统带来了重大挑战。有鉴于此,我们提出了一种基于基于训练的叠加方法的信道估计和数据检测方案。通过采用两个解相关器,从信道和数据估计中都消除了MAI,从而提高了性能。通道和数据解相关器。在频率选择性慢衰落信道上研究了所提出的估计技术的性能,在该信道上,我们得出了BER的闭式表达式,该表达式是用户数K,可解析路径数L和接收数的函数最后,我们提出的方案显示出对信道估计误差更鲁棒。此外,分析和仿真结果均表明实现了完整的系统多样性。

著录项

  • 作者

    Assra, Ayman M.;

  • 作者单位

    Concordia University (Canada).;

  • 授予单位 Concordia University (Canada).;
  • 学科 Computer Science.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 134 p.
  • 总页数 134
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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