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Outage Probability Analysis of Full-Duplex Amplify-and-Forward MIMO Relay Systems

机译:全双工放大和转发MIMO中继系统的中断概率分析

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摘要

Multiple-input multiple-output systems have gained focus in the last decade due to the benefits they provide in enhancing the quality of communications. On the other hand, full-duplex communication has attracted remarkable attention due to its ability to improve the spectral efficiency compared to the existing half-duplex systems. Using full-duplex communications on MIMO co-operative networks can provide us solutions that can completely outperform existing systems with simultaneous transmission and reception at high data rates.;This thesis considers a full-duplex MIMO relay which amplifies and forwards the received signals, between a source and a destination that do not a have line of sight. Full-duplex mode raises the problem of self-interference. Though all the links in the system undergo frequency flat fading, the end-to-end effective channel is frequency selective. This is due to the imperfect cancellation of the self-interference at the relay and this residual self-interference acts as intersymbol interference at the destination which is treated by equalization. This also leads to complications in form of recursive equations to determine the input-output relationship of the system. This also leads to complications in the form of recursive equations to determine the input-output relationship of the system. To overcome this, a signal flow graph approach using Mason's gain formula is proposed, where the effective channel is analyzed with keen notice to every loop and path the signal traverses. This gives a clear understanding and awareness about the orders of the polynomials involved in the transfer function, from which desired conclusions can be drawn. But the complexity of Mason's gain formula increases with the number of antennas at relay which can be overcome by the proposed linear algebraic method. Input-output relationship derived using simple concepts of linear algebra can be generalized to any number of antennas and the computation complexity is comparatively very low.;For a full-duplex amplify-and-forward MIMO relay system, assuming equalization at the destination, new mechanisms have been implemented at the relay that can compensate the effect of residual self-interference namely equal-gain transmission and antenna selection. Though equal-gain transmission does not perform better than the maximal ratio transmission, a trade-off can be made between performance and implementation complexity. Using the proposed antenna selection strategy, one pair of transmit-receive antennas at the relay is selected based on four selection criteria discussed. Outage probability analysis is performed for all the strategies presented and detailed comparison has been established. Considering minimum mean-squared error decision feedback equalizer at the destination, a bound on the outage probability has been obtained for the antenna selection case and is used for comparisons. A cross-over point is observed while comparing the outage probabilities of equal-gain transmission and antenna selection techniques, as the signal-to-noise ratio increases and from that point antenna selection outperforms equal-gain transmission and this is explained by the fact of reduced residual self-interference in antenna selection method.
机译:在过去的十年中,多输入多输出系统由于在提高通信质量方面的优势而备受关注。另一方面,与现有的半双工系统相比,全双工通信由于具有提高频谱效率的能力而备受关注。在MIMO协作网络上使用全双工通信可以为我们提供解决方案,该解决方案可以完全优于现有系统,并且可以在高数据速率下同时进行发送和接收。没有视线的来源和目的地。全双工模式提出了自干扰问题。尽管系统中的所有链路都经历了频率平坦衰落,但是端到端有效信道是频率选择性的。这是由于不完全消除了中继器上的自干扰,并且这种残留的自干扰充当了通过均衡处理的目标位置上的符号间干扰。这也导致以递归方程形式确定系统输入输出关系的复杂性。这也导致以递归方程形式确定系统输入输出关系的复杂性。为了克服这个问题,提出了一种使用梅森增益公式的信号流图方法,该方法在分析有效通道时会特别注意每个经过的回路和路径。这使您对传​​递函数中涉及的多项式的阶数有了清晰的了解和认识,从中可以得出所需的结论。但是,梅森增益公式的复杂度随着中继天线的数量而增加,这可以通过提出的线性代数方法来克服。使用线性代数的简单概念得出的输入输出关系可以推广到任意数量的天线,并且计算复杂度相对较低。对于全双工放大和转发MIMO中继系统,假设在目的地进行均衡,则新的已经在中继器上实现了可以补偿残余自干扰影响的机制,即等增益传输和天线选择。尽管等增益传输的性能并不比最大比率传输更好,但是可以在性能和实现复杂度之间进行权衡。使用所提出的天线选择策略,基于所讨论的四个选择标准来选择中继站上的一对收发天线。对提出的所有策略执行中断概率分析,并已建立详细的比较。考虑到目的地的最小均方误差决策反馈均衡器,已经针对天线选择情况获得了中断概率的界限,并将其用于比较。当比较等增益传输和天线选择技术的中断概率时,观察到一个交叉点,这是因为信噪比增加,从这一点开始,天线选择的性能优于等增益传输,这可以通过以下事实来解释:减少了天线选择方法中的残余自干扰。

著录项

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Electrical engineering.
  • 学位 M.S.
  • 年度 2018
  • 页码 89 p.
  • 总页数 89
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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