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Dual band complementary split-ring resonator-loaded printed dipole antenna arrays for pattern diversity multiple-input–multiple-output applications

机译:双频段互补开环谐振器加载的印刷偶极子天线阵列,用于模式分集多输入多输出应用

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摘要

In this study, a dual-band multiple-input–multiple-output (MIMO) antenna with pattern diversity is designed, targeting at the 2.4 GHz wireless local area network and 1.8 GHz global system of mobile communication application bands. The proposed scheme utilises arrays of printed dipoles fed with signals of equal amplitude but different input-phase values to achieve diverse radiation patterns in the operating frequency bands. The printed dipoles are loaded with complementary split-ring resonators to obtain one additional lower-frequency resonance, ensuring simultaneous miniaturisation and dual-band characteristics. The impedance, radiation and diversity performances of the proposed MIMO configuration are analysed by full-wave simulations in ANSYS high-frequency structure simulator. It is observed that both the antennas in the MIMO configuration cover the common frequency range of 1.7–1.8 and 2.25–2.5 GHz, with satisfactory average gain and stable radiation pattern in the working bands. Experimental results on the fabricated structure are in good agreement with simulation results, confirming validity of the proposed concept.
机译:在这项研究中,设计了一种具有模式分集的双频多输入多输出(MIMO)天线,针对2.4 GHz无线局域网和1.8 GHz移动通信应用频段的全球系统。所提出的方案利用印刷偶极子阵列馈送具有相等幅度但不同输入相位值的信号,以在工作频带中实现各种辐射方向图。印刷偶极子上装有互补的开口环谐振器,以获得另一种低频谐振,从而确保了同时的小型化和双频特性。在ANSYS高频结构仿真器中,通过全波仿真分析了所提出MIMO配置的阻抗,辐射和分集性能。可以看出,MIMO配置中的两个天线都覆盖1.7–1.8和2.25–2.5 GHz的公共频率范围,在工作频带中具有令人满意的平均增益和稳定的辐射方向图。所制造结构的实验结果与仿真结果吻合良好,证实了所提出概念的有效性。

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