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基于约束多模算法的MIMO天线隔离增强与辐射方向图校正新型结构设计

CMA-Based design of a Novel structure for isolation enhancement and Radiation Pattern correction in MIMO antennas.

作者信息

Kang Myeong-Jun, Park Jaesun, Heo Hyuk, Qu Longyue, Jung Kyung-Young

机构信息

Department of Electronic Engineering, Hanyang University, Seoul, 04763, South Korea.

School of Electronics and Information Engineering, Harbin Institute of Technology (Shenzhen), Shenzhen, 518055, China.

出版信息

Sci Rep. 2025 Jan 2;15(1):21. doi: 10.1038/s41598-024-84793-3.

Abstract

This paper presents novel MIMO microstrip patch antennas with dimensions of 40 × 80 × 1.6 mm³ incorporating a decoupling and pattern correction structure (DPCS) designed to mitigate mutual coupling and radiation pattern distortion, operating within 3.6-3.7 GHz. Using characteristic mode analysis (CMA), two key modes affecting coupling and pattern degradation are identified, with the DPCS strategically positioned to address these issues. Unlike other decoupling techniques, the DPCS requires no additional space or structural complexity, making it suitable for 5G MIMO systems. The proposed design achieves isolation up to 90 dB and enhances the realized gain of Port 2 by 3 dB at boresight in simulations. Fabricated antennas were measured, achieving peak isolation of 80 dB in an anechoic chamber. Additionally, measurements in a noisy environment confirmed the robustness of the design under realistic conditions. Measured radiation patterns verified the DPCS's ability to correct the radiation pattern. Key MIMO performance metrics, including ECC (2 × 10⁻⁴), DG (≈ 10), CCL (< 0.2 bits/s/Hz), MEG (≈ -7 dB), and TARC (< -12 dB), affirmed the design's superior performance. The proposed structure can be applied to a variety of applications such as high-density urban wireless networks and IoT systems, where maintaining high isolation and reliable communication are critical requirements.

摘要

本文介绍了尺寸为40×80×1.6 mm³的新型MIMO微带贴片天线,其集成了解耦和方向图校正结构(DPCS),旨在减轻互耦和辐射方向图失真,工作在3.6 - 3.7 GHz频段。利用特征模式分析(CMA),识别出影响耦合和方向图退化的两个关键模式,并通过策略性地放置DPCS来解决这些问题。与其他去耦技术不同,DPCS不需要额外的空间或结构复杂性,使其适用于5G MIMO系统。在仿真中,所提出的设计实现了高达90 dB的隔离度,并在视轴方向将端口2的实现增益提高了3 dB。对制作的天线进行了测量,在消声室中实现了80 dB的峰值隔离度。此外,在嘈杂环境中的测量证实了该设计在实际条件下的稳健性。测量的辐射方向图验证了DPCS校正辐射方向图的能力。关键的MIMO性能指标,包括ECC(2×10⁻⁴)、DG(≈10)、CCL(<0.2 bits/s/Hz)、MEG(≈ -7 dB)和TARC(< -12 dB),证实了该设计的卓越性能。所提出的结构可应用于各种应用,如高密度城市无线网络和物联网系统,在这些应用中,保持高隔离度和可靠通信是关键要求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f47/11696995/26495f3d27d5/41598_2024_84793_Fig1_HTML.jpg

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