全息MIMO中的互耦合:物理建模和信息论分析

Andrea Pizzo;Angel Lozano
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引用次数: 0

摘要

本文提出了一个全息多天线通信的综合框架,该框架集成了相对于波长的宽孔径和紧密间隔的天线。所提出的框架是物理接地的,使信息理论分析能够固有地结合天线之间的相关性和相互耦合。这建立了相关和耦合对跨信噪比水平的信息论性能限制的综合影响。此外,研究表明,通过适当选择单个天线方向图,可以利用互耦来增强或抵消特定信噪比的空间相关性,从而提高性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mutual Coupling in Holographic MIMO: Physical Modeling and Information-Theoretic Analysis
This paper presents a comprehensive framework for holographic multiantenna communication, a paradigm that integrates both wide apertures and closely spaced antennas relative to the wavelength. The presented framework is physically grounded, enabling information-theoretic analyses that inherently incorporate correlation and mutual coupling among the antennas. This establishes the combined effects of correlation and coupling on the information-theoretic performance limits across SNR levels. Additionally, it reveals that, by suitably selecting the individual antenna patterns, mutual coupling can be harnessed to either reinforce or counter spatial correlations as appropriate for specific SNRs, thereby improving the performance.
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