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Amplify-and-forward relaying in wireless communication networks.

机译:无线通信网络中的放大转发中继。

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摘要

Wireless networks are growing rapidly as demand for reliable, high data rate, and efficient communication technologies has intensified during recent years. To address the requested increase in capacity and to improve wireless link performance, co-operative wireless relay based networks have been adopted. Among the proposed relay strategies, amplify-and-forward (AF) has been more widely adopted due its simplicity.In this thesis, first, we propose a protocol for a single antenna AF relay network with power constraint at the destination. The power constraint is defined such that the received signal power is bounded between two values in order to control interference to neighboring cells using the same spectrum. The proposed scheme simultaneously maximizes SNR and minimizes MMSE. It is shown that the proposed scheme achieves full diversity order. Furthermore, the effect of channel uncertainties on the system performance is investigated and a modified solution for the proposed scheme is provided.Next, we consider a multiple input multiple output (MIMO) AF relay network. We investigate maximum SNR solutions subject to zero-forcing (ZF) criteria, as well as approximate MMSE equalizers with specified target SNR without power constraint. First, without considering any predetermined MIMO equalizer, we design the optimal relay matrix such that it maximizes the output SNR without post-equalization. This is achieved under a zero-forcing (ZF) criterion with a specified target output SNR. Second, we design the relay matrix and equalizer pair under a MMSE criterion, considering two distinct cases: (i) where relay matrix and equalizer are designed in two independent steps (MMSE in two steps) (ii) where relay matrix and equalizer are designed jointly. Then, we extend our previous results to include a power constraint at the receiver. We derive the optimal relay matrix that minimizes the overall MMSE subject to the power constraint at the destination. We, also maximize SNR subject to ZF at the output of equalizer.Also, a closed form solution is provided for a single antenna AF relay network by minimizing MMSE subject to a global power constraint at the output of relays where each node in the network is equipped with one antenna.Finally, we propose a training based channel estimation for single antenna AF relay networks. We consider LMMSE channel estimator and derive a lower bound for the capacity considering the effect of channel estimation error.
机译:近年来,随着对可靠,高数据速率和高效通信技术的需求不断增强,无线网络正在迅速发展。为了解决所要求的容量增加和改善无线链路性能,已经采用了基于协作无线中继的网络。在所提出的中继策略中,放大和转发(AF)由于其简单性而被更广泛地采用。在本文中,首先,我们提出了在目的地具有功率约束的单天线AF中继网络的协议。功率限制被定义为使得接收信号功率被限制在两个值之间,以便控制对使用相同频谱的相邻小区的干扰。所提出的方案同时使SNR最大化并且使MMSE最小化。结果表明,该方案实现了全分集阶数。此外,研究了信道不确定性对系统性能的影响,并为该方案提供了改进的解决方案。接下来,我们考虑了多输入多输出(MIMO)AF中继网络。我们研究了遵循零强迫(ZF)标准的最大SNR解决方案,以及具有指定目标SNR且无功率约束的近似MMSE均衡器。首先,在不考虑任何预定MIMO均衡器的情况下,我们设计了最佳中继矩阵,以使其在无需后均衡的情况下最大化输出SNR。这是在具有指定目标输出SNR的零强制(ZF)标准下实现的。其次,考虑两种不同情况,我们在MMSE准则下设计中继矩阵和均衡器对:(i)中继矩阵和均衡器分两个独立步骤设计(MMSE分两步)(ii)中继矩阵和均衡器设计共同。然后,我们扩展先前的结果,以包括接收器处的功率约束。我们推导了最佳中继矩阵,该矩阵在目的地处受到功率限制的情况下最大程度地降低了整体MMSE。我们还使均衡器输出处受ZF限制的SNR最大化。此外,通过最小化受中继器输出限制的MMSE来为单个天线AF中继网络提供封闭形式的解决方案,其中网络中的每个节点都是最后,我们提出了基于训练的单天线AF中继网络信道估计。考虑信道估计误差的影响,我们考虑了LMMSE信道估计器,并得出了容量的下限。

著录项

  • 作者

    Behbahani, Alireza Shahan.;

  • 作者单位

    University of California, Irvine.;

  • 授予单位 University of California, Irvine.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 127 p.
  • 总页数 127
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:38:08

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