A Floquet Series-Based Framework to Evaluate the Impact of Antenna Efficiency on MIMO Systems

Yongxi Liu;Ming Zhang;Xiaoming Chen;Anxue Zhang
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Abstract

Antenna efficiency is a key parameter in the design of large-scale dense arrays, and influences the signal-to-noise ratio (SNR) of wireless communications. Low embedded element efficiency (EEE) has been verified to be the bottleneck of dense array MIMO systems. Using ideas from the Floquet series, we propose a new framework to evaluate the mutual coupling for infinite arrays with a regular grid, including two new methods to calculate the EEE. The proposed methods can incorporate the impedance of the source network, whereas the traditional geometry based method assumes perfect impedance matching at all scan angles. Starting from the surface current of array elements, the radiation field is decomposed into a set of current-weighted orthogonal electromagnetic waves. This decomposition can be utilized to compute the radiation characteristics of the antenna array, including the active impedance, the generalized scattering parameters, and the embedded element patterns. Theoretical analysis is provided to illustrate how the degradation of EEE reduces the SNR and sequentially channel capacity of MIMO systems. Numerical simulations show that the proposed methods give a more accurate efficiency than the geometry based method. Channel capacity based on the polarization holographic channel model is evaluated to validate the constraining effect of EEE on system throughput.
基于Floquet序列的天线效率评估框架对MIMO系统的影响
天线效率是大规模密集阵列设计的关键参数,影响着无线通信的信噪比。低嵌入单元效率(EEE)已被证明是密集阵列MIMO系统的瓶颈。利用Floquet级数的思想,我们提出了一个新的框架来评估具有规则网格的无限阵列的互耦合,包括两种新的计算EEE的方法。传统的基于几何的方法在所有扫描角度上都假定了完美的阻抗匹配,而该方法可以考虑源网络的阻抗。从阵列单元表面电流出发,将辐射场分解为一组电流加权正交电磁波。利用这种分解方法可以计算天线阵的辐射特性,包括有源阻抗、广义散射参数和嵌入元件方向图。理论分析说明了EEE的退化如何降低MIMO系统的信噪比和信道容量。数值模拟结果表明,该方法比基于几何的方法具有更高的精度。基于偏振全息信道模型对信道容量进行了评估,验证了EEE对系统吞吐量的约束作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
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