Ramanathan Karthikeyan, Gopalakrishnan Srivatsun, Chandrakanthan Thrisha
Department of ECE, Kumaraguru College of Technology, Coimbatore 641049, India.
Department of ECE, PSG College of Technology, Coimbatore 641001, India.
Micromachines (Basel). 2025 Jun 17;16(6):716. doi: 10.3390/mi16060716.
The growing demand for high-speed and high-capacity wireless communication has intensified the need for compact, wideband, and efficient MIMO antenna systems, particularly for 5G mid-band and UWB applications. This article presents a miniaturized dual and quad port MIMO antenna design optimized for 5G mid-band (n77/n78/n79/n96/n102) and Ultra-Wideband (UWB) applications without employing any decoupling structures between the radiating elements. The 2-port configuration features two closely spaced symmetric monopole elements (spacing < λ/2), promoting efficient use of space without degrading performance. An FR4 substrate (εr = 4.4) is used for fabrication with a compact size of 30 × 41 × 1.6 mm. This layout is extended orthogonally and symmetrically to form a compact quad-port variant with dimensions of 60 × 41 × 1.6 mm. Both designs offer a broad operational bandwidth from 2.6 GHz to 10.8 GHz (8.2 GHz), retaining return loss (S) below -10 dB and strong isolation (S < -20 dB at high frequencies, <-15 dB at low frequencies). The proposed MIMO antennas demonstrate strong performance and excellent diversity characteristics. The two-port antenna achieves an average envelope correlation coefficient (ECC) of 0.00204, diversity gain (DG) of 9.98 dB, and a mean effective gain difference (MEG) of 0.3 dB, with a total active reflection coefficient (TARC) below -10 dB and signal delay variation under 0.25 ns, ensuring minimal pulse distortion. Similarly, the four-port design reports an average ECC of 0.01432, DG of 9.65 dB, MEG difference below 0.3 dB, and TARC below -10 dB, confirming robust diversity and MIMO performance across both configurations.
对高速和高容量无线通信日益增长的需求,加剧了对紧凑、宽带和高效多输入多输出(MIMO)天线系统的需求,特别是对于5G中频段和超宽带(UWB)应用。本文提出了一种针对5G中频段(n77/n78/n79/n96/n102)和超宽带(UWB)应用进行优化的小型化双端口和四端口MIMO天线设计,在辐射元件之间未采用任何去耦结构。双端口配置具有两个紧密间隔的对称单极子元件(间距<λ/2),在不降低性能的情况下促进了空间的有效利用。采用FR4基板(εr = 4.4)进行制造,尺寸紧凑,为30×41×1.6 mm。此布局沿正交和对称方向扩展,以形成尺寸为60×41×1.6 mm的紧凑四端口变体。两种设计均提供从2.6 GHz至10.8 GHz(8.2 GHz)的宽工作带宽,回波损耗(S)保持在-10 dB以下,隔离度良好(高频时S < -20 dB,低频时<-15 dB)。所提出的MIMO天线展现出强大的性能和出色的分集特性。双端口天线的平均包络相关系数(ECC)为0.00204,分集增益(DG)为9.98 dB,平均有效增益差(MEG)为0.3 dB,总有源反射系数(TARC)低于-10 dB,信号延迟变化在0.25 ns以下,确保最小的脉冲失真。同样,四端口设计的平均ECC为0.01432,DG为9.65 dB,MEG差低于0.3 dB,TARC低于-10 dB,证实了两种配置均具有强大的分集和MIMO性能。