Mohanty Asutosh, Behera Bikash Ranjan, Nasimuddin Nasimuddin, Alsharif Mohammed H, Uthansakul Peerapong, Mohsan Syed Agha Hassnain
School of Electronics Engineering, Kalinga Institute of Industrial Technology Bhubaneswar, Bhubaneswar 751024, India.
Department of Electronics and Communication Engineering, Centre for Advanced Post Graduate Studies (BPUT) Rourkela, Rourkela 769015, India.
Sensors (Basel). 2022 Jul 17;22(14):5335. doi: 10.3390/s22145335.
A miniaturized four-element antenna of 20 mm × 20 mm with edge-to-edge distance of 4.9 mm between the array antennas operating from 4.6−8.6 GHz is investigated in this article. The antenna consists of 4 × integrated dipole driven elements, and complementary split ring resonator (CSRR) metacells are loaded on the both sides of each dipole arms. The loaded meta-couplers magnetically couple to dipole drivers, and the induced resonance effect improves the 10-dB impedance bandwidth (IBW) to 60.6%. To improvise the isolation between antenna elements, metallic vias are implemented that trap electromagnetic (EM)-surface waves to condense into the ground. So, the meta-couplers induce electromagnetic (EM)-propagation as surface wave trapments for radiation and decouple near-field condensed currents, acting as couplers/decouplers. The maximum isolation achieved is >−22.5 dB without any external decoupling network. The diversity parameters indicate good attributes in isotropic, indoor, and outdoor channel environments with an envelope correlation coefficient (ECC) < 0.165 and realized gain of 5.5 dBi with average radiation efficiency of 80−90% in the desired operating bands. An equivalent circuit model using lumped components is designed for the proposed four-element antenna. For validation, a prototype antenna is fabricated and measured to be implemented in 5G applications, which shows good correlation with the full-wave simulated results.
本文研究了一种尺寸为20 mm×20 mm的小型化四元天线,其阵列天线之间的边到边距离为4.9 mm,工作频率为4.6−8.6 GHz。该天线由4个集成偶极驱动元件组成,每个偶极臂的两侧均加载了互补分裂环谐振器(CSRR)元胞。加载的元耦合器与偶极驱动器进行磁耦合,感应共振效应将10 dB阻抗带宽(IBW)提高到60.6%。为了改善天线元件之间的隔离度,采用了金属过孔,以捕获电磁(EM)表面波并将其聚集到接地面。因此,元耦合器诱导电磁(EM)传播,作为辐射的表面波捕获器,并解耦近场凝聚电流,起到耦合器/解耦器的作用。在没有任何外部去耦网络的情况下,实现的最大隔离度>−22.5 dB。分集参数表明,在各向同性、室内和室外信道环境中,该天线具有良好的特性,包络相关系数(ECC)<0.165,在所需工作频段内实现增益为5.5 dBi,平均辐射效率为80−90%。针对所提出的四元天线,设计了一种使用集总元件的等效电路模型。为了进行验证,制作并测量了一个原型天线,以用于5G应用,其与全波模拟结果显示出良好的相关性。