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基于小型化天线阵列的新型超材料技术在可重构 MIMO 系统中的应用。

Miniaturized Antenna Array-Based Novel Metamaterial Technology for Reconfigurable MIMO Systems.

机构信息

Department of Computer Engineering, Karabuk University, Karabuk 78050, Turkey.

International Applied and Theoretical Research Center (IATRC), Baghdad 10001, Iraq.

出版信息

Sensors (Basel). 2023 Jun 25;23(13):5871. doi: 10.3390/s23135871.

Abstract

In this work, a highly miniaturized microstrip antenna array based on two elements is proposed for multiple inputs multiple outputs (MIMO) application systems at sub-6 GHz frequency bands. The antenna is structured from a meander line in conjugate with an interdigital capacitor when excited through the monopole basic antenna. The proposed antenna elements are separated with a Minkowski factor-shaped metamaterial (MTM) column to achieve a separation distance (D) of 0.08λ at 3 GHz when printed on an FR-4 substrate. Later on, the antenna performance in terms of bandwidth and gain is controlled using a photonic process based on optical active switches based on light-dependent resistances (LDR). Therefore, the reconfiguration complexity with such a technique can be eliminated significantly without the need for a biasing circuit. The antenna design was conducted through several parametric studies to arrive at the optimal design that realizes the frequency bandwidth between 3 and 5.5 GHz with a maximum gain of about 4.5 dBi when all LDR terminals are off. For a wireless channel performance study-based massive MIMO environment, the proposed antenna is suitable to be configured in arrays of 64 × 64 elements. From this study, it was found the maximum bit error rate (BER) does not exceed 0.15 with a channel capacity (CC) of 2 Gbps. For validation, the antenna was fabricated based on two elements and tested experimentally. Finally, it was revealed that the measured results agree very well with simulations after comparing the theoretical calculations with the measured data.

摘要

在这项工作中,提出了一种基于两个单元的高度小型化微带天线阵列,用于在低于 6GHz 的频段的多输入多输出(MIMO)应用系统中。该天线由在偶极子基本天线激励时与叉指电容器相结合的曲折线构成。所提出的天线元件通过 Minkowski 因子形状的超材料(MTM)柱隔开,以在 FR-4 基板上印刷时在 3GHz 时实现 0.08λ的分离距离(D)。后来,通过基于光致电阻(LDR)的光有源开关的光激活工艺来控制天线的带宽和增益性能。因此,可以显著消除这种技术的重新配置复杂性,而无需偏置电路。通过进行多次参数研究进行了天线设计,以实现 3 到 5.5GHz 之间的频率带宽,当所有 LDR 端子关闭时,最大增益约为 4.5dBi。对于基于无线信道性能研究的大规模 MIMO 环境,所提出的天线适合配置为 64×64 个元素的阵列。从这项研究中可以发现,当信道容量(CC)为 2Gbps 时,最大误码率(BER)不超过 0.15。为了验证,基于两个单元制造了天线并进行了实验测试。最后,通过将理论计算与测量数据进行比较,发现测量结果与模拟结果非常吻合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/016e/10346162/315bf0939347/sensors-23-05871-g001.jpg

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