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The performance of cooperative-diversity wireless networks using adaptive modulation.

机译:使用自适应调制的协作分集无线网络的性能。

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摘要

This thesis analyzes the throughput performance of the cooperative diversity wireless network using adaptive modulation over Rayleigh fading channels. Cooperative diversity is achieved by utilizing neighboring terminals as relays. These relays can generate copies of the same signal, which can provide spatial diversity gain and high Signal-to-Noise Ratio (SNR). The main drawback of cooperative diversity is the throughput decrease due to the extra resources needed for relaying. Therefore, throughput is greatly reduced. In this thesis, the adaptive modulation is used to convert the obtained SNR gain to throughput gain to compensate for the throughput reduction. Results show that the cooperative diversity networks with adaptive modulation not only compensate for the throughput loss but also achieve considerable throughput gain compared with the classical system with direct transmission when the Channel State Information (CSI) is perfectly known in advance. Moreover, this thesis investigates the throughput gain of the cooperative diversity networks with adaptive modulation when the CSI is imperfect. Results show that a great throughput loss is caused by the imperfect CSI, but considerable throughput gain still exists. More importantly, this thesis sets up the mathematical models for the simulated systems. Hence, the analytical evaluation of the system performance is presented in both perfect CSI and imperfect CSI case to verify the simulation results. In addition, this thesis also analyzes the relationship between the throughput gain and the number of relays. The optimal number of relays that maximizes the throughput is found to be one, when simultaneous relaying is not considered. It is also found that the throughput increases linearly with the number of relays, if simultaneous relaying is considered. Besides, the BER performance of the cooperative diversity network using fixed modulation is also investigated in simulation and analytical methods based on the analytical results from the cooperative diversity network using adaptive modulation. Results show that the BER performance of the cooperative diversity network under perfect CSI using fixed modulation is much better than that of the classical direct transmission system. In addition, there is significant BER performance degradation of the cooperative diversity network under imperfect CSI compared with that from the cooperative diversity network under perfect CSI. However, the cooperative diversity network under imperfect CSI is still better than the classical direct transmission system in BER performance.
机译:本文利用瑞利衰落信道上的自适应调制技术分析了协作分集无线网络的吞吐性能。通过利用相邻终端作为中继来实现合作分集。这些继电器可以生成同一信号的副本,从而可以提供空间分集增益和高信噪比(SNR)。合作分集的主要缺点是由于中继所需的额外资源而导致吞吐量下降。因此,吞吐量大大降低。本文采用自适应调制技术将获得的信噪比增益转换为吞吐量增益,以补偿吞吐量的降低。结果表明,与具有直接传输功能的经典系统相比,具有自适应调制能力的协作分集网络不仅可以补偿吞吐量损失,而且还可以在预先知道信道状态信息(CSI)的情况下获得可观的吞吐量增益。此外,本文研究了CSI不完善时具有自适应调制的协作分集网络的吞吐率增益。结果表明,CSI不完善会导致很大的吞吐量损失,但是仍然存在相当大的吞吐量增益。更重要的是,本文建立了仿真系统的数学模型。因此,在完美CSI和不完美CSI情况下都对系统性能进行了分析评估,以验证仿真结果。此外,本文还分析了吞吐量增益与中继数量之间的关系。当不考虑同时中继时,可以使吞吐量最大化的最佳中继数为1。还发现,如果考虑同时中继,则吞吐量随着中继数量线性增加。此外,还基于基于自适应调制的协作分集网络的分析结果,在仿真和分析方法中研究了采用固定调制的协作分集网络的BER性能。结果表明,在采用固定调制的完美CSI下,协作分集网络的BER性能要比经典直接传输系统好得多。此外,与完美CSI下的协作分集网络相比,不完善的CSI下的协作分集网络的BER性能显着下降。但是,不完善CSI下的协作分集网络在BER性能上仍优于传统的直接传输系统。

著录项

  • 作者

    Chen, Hao.;

  • 作者单位

    Memorial University of Newfoundland (Canada).;

  • 授予单位 Memorial University of Newfoundland (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 M.Eng.
  • 年度 2008
  • 页码 112 p.
  • 总页数 112
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 普通生物学 ;
  • 关键词

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