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Multiple-input multiple-output wireless systems: Coding, distributed detection and antenna selection.

机译:多输入多输出无线系统:编码,分布式检测和天线选择。

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摘要

This dissertation studies a number of important issues that arise in multiple-input multiple-out wireless systems. First, wireless systems equipped with multiple-transmit multiple-receive antennas are considered where an energy-based antenna selection is performed at the receiver. Three different situations are considered: (i) selection over iid MIMO fading channel, (ii) selection over spatially correlated fading channel, and (iii) selection for space-time coded OFDM systems. In all cases, explicit upper bounds are derived and it is shown that using the proposed antenna selection, one can achieve the same diversity order as that attained by full-complexity MIMO systems. Next, joint source-channel coding problem for MIMO antenna systems is studied and a turbo-coded multiple description code for multiple antenna transmission is developed. Simulations indicate that by the proposed iterative joint source-channel decoding that exchanges the extrinsic information between the source code and the channel code, one can achieve better reconstruction quality than can be achieved by the single-description codes at the same rate. The rest of the dissertation deals with wireless networks. Two problems are studied: channel coding for cooperative diversity in wireless networks, and distributed detection in wireless sensor networks. First, a turbo-code based channel code for three-terminal full-duplex wireless relay channels is proposed where both the source and the relay nodes employ turbo codes. An iterative turbo decoding algorithm exploiting the information arriving from both the source and relay nodes is proposed. Simulation results show that the proposed scheme can perform very close to the capacity of a wireless relay channel. Next the parallel and serial binary distributed detection problem in wireless sensor networks is investigated. Detection strategies based on single-bit and multiple-bit decisions are considered. The expressions for the detection and false alarm rates are derived and used for designing the optimal detection rules at all sensor nodes. Also, an analog approach to the distributed detection in wireless sensor networks is proposed where each sensor nodes simply amplifies-and-forwards its sufficient statistics to the fusion center. This method requires very simple processing at the local sensor. Numerical examples indicate that the analog approach is superior to the digital approach in many cases.
机译:本文研究了多输入多输出无线系统中出现的许多重要问题。首先,考虑在接收器处执行基于能量的天线选择的,配备有多发射多接收天线的无线系统。考虑了三种不同情况:(i)在iid MIMO衰落信道上进行选择,(ii)在空间相关的衰落信道上进行选择,以及(iii)对空时编码OFDM系统进行选择。在所有情况下,都得出了明确的上限,并且表明使用所提出的天线选择,可以实现与全复杂度MIMO系统所获得的相同的分集阶数。接下来,研究了MIMO天线系统的联合源信道编码问题,并开发了用于多天线传输的turbo编码的多描述代码。仿真表明,通过所提出的在源代码和信道代码之间交换外部信息的迭代联合源信道解码,可以达到比单描述代码以相同的速率实现更好的重建质量。本文的其余部分涉及无线网络。研究了两个问题:无线网络中用于协作分集的信道编码,以及无线传感器网络中的分布式检测。首先,提出了用于三终端全双工无线中继信道的基于turbo码的信道代码,其中源节点和中继节点均采用turbo码。提出了一种利用来自源节点和中继节点的信息进行迭代的Turbo解码算法。仿真结果表明,所提出的方案可以非常接近无线中继信道的容量。接下来研究无线传感器网络中的并行和串行二进制分布式检测问题。考虑基于单比特和多比特决策的检测策略。得出检测率和误报率的表达式,并将其用于设计所有传感器节点处的最佳检测规则。另外,提出了一种用于无线传感器网络中的分布式检测的模拟方法,其中每个传感器节点简单地将其足够的统计量放大并转发给​​融合中心。该方法需要在本地传感器上进行非常简单的处理。数值示例表明,在许多情况下,模拟方法要优于数字方法。

著录项

  • 作者

    Bahceci, Israfil.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 191 p.
  • 总页数 191
  • 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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