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Advanced relay selection schemes for cooperative communications.

机译:用于协作通信的高级中继选择方案。

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摘要

It is widely considered that cooperative diversity, in idealized conditions, can provide dramatic performance improvements in capacity and error probability. But non-ideal phenomena, such as fast time variations of the channel, channel estimation errors (CEE), feedback delay (FD) and co-channel interference, degrade the performance of the cooperative communication networks.;This thesis studies the impact of these phenomena on advanced relay selection techniques in cooperative communication networks. In particular, Chapters 2--4 treat inter-vehicular communication (IVC) networks with fast time variations in the channel. For different relaying protocols, the impact of CEE and FD on the performance of cooperative communication with relay selection is presented in terms of average capacity, average symbol error rate, outage probability, and the achievable diversity order. Chapters 5 and 6 discuss how interference deteriorates the performance of a cognitive secondary network using relay selection in the presence of a primary network which has priority access to the spectrum. The primary and secondary network signals are treated as mutually interfering noise. Transmission powers in the secondary network are constrained such that the primary user can still perform satisfactorily. Based on interference levels, new selection and power control techniques are presented for the secondary network, and the outage probability is determined. Finally Chapter 7 summarizes the research and proposes future works related.
机译:人们普遍认为,在理想条件下,协作分集可以显着提高容量和错误概率的性能。但是信道的快速变化,信道估计误差(CEE),反馈延迟(FD)和同信道干扰等非理想现象会降低协作通信网络的性能。协作通信网络中高级中继选择技术的现象。特别是,第2--4章讨论了通道间时间快速变化的车辆间通信(IVC)网络。对于不同的中继协议,以平均容量,平均符号错误率,中断概率和可实现的分集顺序来表示CEE和FD对通过中继选择进行协作通信的性能的影响。第5章和第6章讨论了在存在优先访问频谱的主网络的情况下,如何使用中继选择来使干扰恶化认知次级网络的性能。初级和次级网络信号被视为相互干扰的噪声。辅助网络中的传输功率受到限制,以使主要用户仍可以令人满意地执行操作。基于干扰水平,提出了针对次级网络的新选择和功率控制技术,并确定了中断概率。最后,第7章总结了研究并提出了相关的未来工作。

著录项

  • 作者

    Seyfi, Mehdi.;

  • 作者单位

    Simon Fraser University (Canada).;

  • 授予单位 Simon Fraser University (Canada).;
  • 学科 Engineering Electronics and Electrical.;Multimedia Communications.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 154 p.
  • 总页数 154
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 能源与动力工程;
  • 关键词

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