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首页> 外文期刊>IEEE Transactions on Communications >On the Capacity of Multiple-Antenna Systems and Parallel Gaussian Channels With Amplitude-Limited Inputs
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On the Capacity of Multiple-Antenna Systems and Parallel Gaussian Channels With Amplitude-Limited Inputs

机译:具有限幅输入的多天线系统和并行高斯信道的容量

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摘要

We propose upper and lower bounds on the capacity of multiple-input multiple-output (MIMO) systems with amplitude-limited inputs. The results are derived by considering an equivalent channel via singular value decomposition, and by enlarging and reducing the corresponding feasible region of the channel input vector, for the upper and lower bounds, respectively. We analytically characterize the asymptotic behavior of the derived bounds for high and low noise levels, and study the gap between them. We also consider parallel Gaussian channels with peak and average power-constrained inputs. For such channels, the capacity-achieving distribution has been reported in the literature to be discrete, which can be computed using numerical optimization techniques. However, there is no closed-form expression and finding the capacity-achieving distribution is computationally tedious. With this motivation, we derive approximate expressions for the capacity at low and high noise variance levels. We illustrate our findings on both MIMO channels and parallel Gaussian channels via several numerical examples.
机译:我们提出具有幅度限制输入的多输入多输出(MIMO)系统容量的上限和下限。通过奇异值分解考虑等效通道,并分别针对上限和下限,通过放大和缩小通道输入向量的相应可行区域,得出结果。我们分析性地表征了高和低噪声级别的导出边界的渐近行为,并研究了它们之间的差距。我们还考虑了具有峰值和平均功率受限输入的并行高斯通道。对于这样的信道,在文献中已经报道了容量实现分布是离散的,这可以使用数值优化技术来计算。但是,没有封闭形式的表达式,找到容量分布是计算乏味的。以此动机,我们得出了低和高噪声方差水平下的容量的近似表达式。我们通过几个数值示例来说明我们在MIMO信道和并行高斯信道上的发现。

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