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Distributed beamforming in wireless relay networks.

机译:无线中继网络中的分布式波束成形。

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摘要

In this thesis, we consider a wireless network consisting of d source-destination pairs and R relaying nodes. Each source wishes to communicate to its corresponding destination. By exploiting the spatial multiplexing capability of the wireless medium, we develop two cooperative beamforming schemes in order to establish wireless connections between multiple source-destination pairs through a collaborative relay network.;Our second scheme is a distributed downlink beamforming technique which is performed in d + 1 successive time slots. In the first d time slots, the d sources transmit their data to the relay network successively. The relay nodes receive and store the noisy faded versions of the source signals. In the (d + 1)th time slot, the relays aim to collectively provide downlink connections to all d destinations. To do so, each relay transmits a linear combination of the stored signals received during the first d time slots. Again, our goal is to determine the complex weights (used at the relaying nodes to linearly combine the source signals) by minimizing the total relay transmit power while satisfying certain quality of services at the destinations.;We use semi-definite relaxation to turn both problems into semi-definite programming (SDP) problems. Therefore, they can be efficiently solved using interior point methods. We showed that our proposed schemes significantly outperform orthogonal multiplexing schemes, such as time-division multiple access schemes, in a large range of network data rates.;Our first communication scheme consists of two steps. In the first step, all sources transmit their signals simultaneously to the relay network. As a result, each relay receives a noisy faded mixture of all source signals. In the second step, each relay transmits an amplitude- and phase-adjusted version of its received signal, i.e., the relay received signals are multiplied by a set of complex coefficients and are retransmitted. Our goal is to obtain these complex coefficients (beamforming weights) through minimization of the total relay transmit power while the signal-to-interference-plus-noise ratio at the destinations are guaranteed to be above certain pre-defined thresholds.
机译:在本文中,我们考虑了一个由d个源-目的地对和R个中继节点组成的无线网络。每个来源都希望与其对应的目的地进行通信。通过利用无线介质的空间复用能力,我们开发了两种协作波束成形方案,以便通过协作中继网络在多个源-目标对之间建立无线连接。我们的第二种方案是在d中执行的分布式下行链路波束成形技术。 +1个连续的时隙。在前d个时隙中,d个源依次将其数据传输到中继网络。中继节点接收并存储源信号的噪声衰落版本。在第(d + 1)个时隙中,中继旨在共同向所有d个目的地提供下行链路连接。为此,每个继电器发送在前d个时隙中接收到的存储信号的线性组合。同样,我们的目标是通过在满足目的地的某些服务质量的同时最小化中继的总发送功率来确定复杂权重(用于中继节点以线性组合源信号);我们使用半确定松弛来将两者问题变成半定程序设计(SDP)问题。因此,可以使用内部点方法有效地解决它们。我们表明,在大范围的网络数据速率下,我们提出的方案明显优于正交复用方案,例如时分多址方案。我们的第一个通信方案包括两个步骤。第一步,所有源同时将其信号传输到中继网络。结果,每个继电器都接收到所有源信号的有噪声的衰落混合信号。在第二步骤中,每个中继器发送其接收信号的幅度和相位调整版本,即,中继器接收的信号乘以一组复数系数并重新发送。我们的目标是通过最小化总中继发射功率来获得这些复数系数(波束赋形权重),同时确保目标处的信号干扰加噪声比高于某些预定阈值。

著录项

  • 作者

    Fazeli-Dehkordy, Siavash.;

  • 作者单位

    Queen's University (Canada).;

  • 授予单位 Queen's University (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 M.Sc.
  • 年度 2008
  • 页码 86 p.
  • 总页数 86
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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