用于超宽带应用的紧凑型 Coradiator MIMO 天线

IF 2.1 Q3 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE IEEE Canadian Journal of Electrical and Computer Engineering Pub Date : 2023-11-30 DOI:10.1109/ICJECE.2023.3312590
K. Srividhya;P. Jothilakshmi
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引用次数: 0

摘要

本文介绍了一种带有共享辐射器的紧凑型平面圆单极子天线,适用于与多输入多输出(MIMO)配置兼容的超宽带(SWB)应用。其新颖之处在于辐射器是一个简单的圆形结构,通过阶跃阻抗馈电增强。该天线在 RO3003 衬底上设计了一个带阶梯系统的部分接地,总尺寸为 29 美元乘以 29 美元乘以 0.8 立方毫米。该天线的工作频带很宽,从 4 GHz 到 50 GHz,甚至更高。该系统通过共享辐射器实现双极化,峰值增益为 7.15 dBi,效率高达 80%-97%。拟议的天线在共享辐射器的双正交端口之间实现了惊人的隔离。此外,还研究和分析了天线在包络相关系数(ECC < 0.002)、复用效率(ME = -3.111 dB)、分集增益(DG > 9.995 dB)和平均有效增益(MEG = -3.01 dB)方面的分集性能。对所设计的结构进行了制造,并测量了天线参数。建议的设计符合预期值,测量参数与模拟参数一致,使该天线成为 SWB-MIMO 应用的合适候选天线。将这两种标准结合起来将有助于无线通信领域的突破。该设计具有宽带宽,可应用于物联网(IoT)、未来的 5G 和新兴的 6G 技术。
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Compact Coradiator MIMO Antenna for Super Wideband Applications
This article presents a compact planar circular monopole antenna with a shared radiator for super wideband (SWB) applications compatible with multiple-input multiple-output (MIMO) configurations. The novelty lies in the coradiator being a simple circular structure enhanced with stepped impedance feed. The antenna uses a partial ground with a stepped system designed over an RO3003 substrate, with an overall dimension of 29 $\times $ 29 $\times $ 0.8 mm3. The antenna operates over a wideband from 4 to 50 GHz and beyond. The system works in dual polarization with a shared radiator and offers a peak gain value of 7.15 dBi with a high efficiency of 80%–97%. The proposed antenna provides stunning isolation between the dual orthogonal ports of the shared radiator. The diversity performance of the antenna in terms of envelope correlation coefficient (ECC < 0.002), multiplexing efficiency (ME = −3.111 dB), diversity gain (DG > 9.995 dB), and mean effective gain (MEG = −3.01 dB) are also studied and analyzed. The designed structure is fabricated, and antenna parameters are measured. The proposed design meets the desired values, and measured parameters agree with the simulated ones, rendering the antenna a suitable candidate for SWB-MIMO applications. Combining the two standards would help breakthrough in wireless communication. With its wide bandwidth, the proposed design finds scope in Internet of Things (IoT), future 5G, and emerging 6G technologies.
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