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Capacity Analysis of Distributed Antenna Systems in a Composite Fading Channel

机译:复合衰落信道中分布式天线系统的容量分析

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摘要

In this paper, we investigate a behavior of the cell average ergodic capacity for distributed antenna systems (DAS) in a composite fading channel model which contains small-scale and large-scale fadings. For small-scale Rayleigh fadings, based on the proof of asymptotic normality, the mean and the variance of the instantaneous capacity were recently presented as a closed form solution. However, this solution is too complicated to be applied directly for obtaining the average ergodic capacity over a cell. In this work, we derive a simple and accurate expression for the ergodic capacity by utilizing the high signal to noise ratio (SNR) analysis. Our simple solution provides meaningful insight on how the ergodic capacity is affected as SNR, pathloss and antenna configurations change. Also it is useful for capturing quantitative performance measures such as the multiplexing gain and the power offset. In addition, we analyze the cell average ergodic capacity by taking into account the shadowing effect and the pathloss on the basis of our results on the small-scale fadings. These expressions lead to some insights on the performance of DAS under practical environments. Finally, numerical results confirm the validity of our analytical results.
机译:在本文中,我们研究了包含小衰落和大规模衰落的复合衰落信道模型中分布式天线系统(DAS)的小区平均遍历容量的行为。对于小范围瑞利衰落,基于渐近正态性的证明,瞬时容量的均值和方差最近以封闭形式给出。然而,该解决方案太复杂,以至于不能直接用于获得整个电池的平均遍历容量。在这项工作中,我们通过利用高信噪比(SNR)分析得出了遍历能力的简单而准确的表达式。我们的简单解决方案提供了有关遍历容量如何随着SNR,路径损耗和天线配置变化而受到影响的有意义的见解。这对于捕获诸如多路复用增益和功率偏移之类的定量性能指标也很有用。另外,我们根据小规模衰落的结果,通过考虑阴影效应和路径损耗来分析细胞平均遍历能力。这些表达使您对实际环境中DAS的性能有了一些见解。最后,数值结果证实了我们分析结果的有效性。

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