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Performance Characterization of Communication Channels through Asymptotic and Partial Ordering Analysis.

机译:通过渐近和偏序分析分析通信通道的性能。

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摘要

Asymptotic comparisons of ergodic channel capacity at high and low signal-to-noise ratios (SNRs) are provided for several adaptive transmission schemes over fading channels with general distributions, including optimal power and rate adaptation, rate adaptation only, channel inversion and its variants. Analysis of the high-SNR pre-log constants of the ergodic capacity reveals the existence of constant capacity difference gaps among the schemes with a pre-log constant of 1. Closed-form expressions for these high-SNR capacity difference gaps are derived, which are proportional to the SNR loss between these schemes in dB scale. The largest one of these gaps is found to be between the optimal power and rate adaptation scheme and the channel inversion scheme. Based on these expressions it is shown that the presence of space diversity or multi-user diversity makes channel inversion arbitrarily close to achieving optimal capacity at high SNR with sufficiently large number of antennas or users. A low-SNR analysis also reveals that the presence of fading provably always improves capacity at sufficiently low SNR, compared to the additive white Gaussian noise (AWGN) case. Numerical results are shown to corroborate our analytical results.;This dissertation derives high-SNR asymptotic average error rates over fading channels by relating them to the outage probability, under mild assumptions. The analysis is based on the Tauberian theorem for Laplace-Stieltjes transforms which is grounded on the notion of regular variation, and applies to a wider range of channel distributions than existing approaches. The theory of regular variation is argued to be the proper mathematical framework for finding sufficient and necessary conditions for outage events to dominate high-SNR error rate performance. It is proved that the diversity order being d and the cumulative distribution function (CDF) of the channel power gain having variation exponent d at 0 imply each other, provided that the instantaneous error rate is upper-bounded by an exponential function of the instantaneous SNR. High-SNR asymptotic average error rates are derived for specific instantaneous error rates. Compared to existing approaches in the literature, the asymptotic expressions are related to the channel distribution in a much simpler manner herein, and related with outage more intuitively. The high-SNR asymptotic error rate is also characterized under diversity combining schemes with the channel power gain of each branch having a regularly varying CDF. Numerical results are shown to corroborate our theoretical analysis.;This dissertation studies several problems concerning channel inclusion, which is a partial ordering between discrete memoryless channels (DMCs) proposed by Shannon. Specifically, majorization-based conditions are derived for channel inclusion between certain DMCs. Furthermore, under general conditions, channel equivalence defined through Shannon ordering is shown to be the same as permutation of input and output symbols. The determination of channel inclusion is considered as a convex optimization problem, and the sparsity of the weights related to the representation of the worse DMC in terms of the better one is revealed when channel inclusion holds between two DMCs. For the exploitation of this sparsity, an effective iterative algorithm is established based on modifying the orthogonal matching pursuit algorithm. The extension of channel inclusion to continuous channels and its application in ordering phase noises are briefly addressed.
机译:在具有一般分布的衰落信道上,针对几种自适应传输方案,提供了在高和低信噪比(SNR)下的遍历信道容量的渐进比较,包括最佳功率和速率自适应,仅速率自适应,通道倒置及其变体。对遍历电容的高SNR前对数常数的分析表明,方案之间存在常数对数常数的恒定差,前对数常数为1。与这些方案之间的SNR损耗成比例(以dB为单位)。发现这些差距中最大的差距是在最佳功率和速率自适应方案与信道倒置方案之间。基于这些表达式,表明空间分集或多用户分集的存在使信道反转任意接近于在具有足够数量的天线或用户的情况下以高SNR实现最佳容量。低SNR分析还显示,与加性高斯白噪声(AWGN)相比,在足够低的SNR情况下,衰落的存在可证明总是可以提高容量。数值结果证明了我们的分析结果。本文在温和的假设下,通过将衰落信道上的高SNR渐近平均错误率与中断概率相关联,得出了这些错误率。该分析基于Laplace-Stieltjes变换的Tauberian定理,该定理基于规则变化的概念,并且比现有方法适用于更广泛的信道分布。有规律的变化理论被认为是为中断事件找到充分和必要条件以支配高SNR错误率性能的合适数学框架。可以证明,假设瞬时误差率以瞬时SNR的指数函数为上限,则分集阶数为d且信道功率增益的累积分布函数(CDF)的变化指数为0。 。对于特定的瞬时错误率,得出高SNR渐近平均错误率。与文献中的现有方法相比,渐近表达式在本文中以更简单的方式与信道分布有关,而在直观上与中断有关。在分集组合方案下,高SNR渐近错误率也得到了表征,每个分支的信道功率增益具有规则变化的CDF。数值结果证明了我们的理论分析。本论文研究了与信道包含有关的几个问题,这是香农提出的离散无记忆信道(DMC)之间的部分排序。具体而言,得出基于特定化条件的条件,用于某些DMC之间的通道包含。此外,在一般情况下,通过香农排序定义的通道等效性与输入和输出符号的排列相同。信道包含的确定被认为是一个凸优化问题,当两个DMC之间保持信道包含时,就可以用更好的DMC表示与较差DMC表示有关的权重的稀疏性。为了利用这种稀疏性,在修改正交匹配追踪算法的基础上,建立了一种有效的迭代算法。简要介绍了将通道包含扩展到连续通道及其在排序相位噪声中的应用。

著录项

  • 作者

    Zhang, Yuan.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 126 p.
  • 总页数 126
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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