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采用人工磁导体表面提高增益的高效宽带印刷单极天线。

High efficiency wideband printed monopole antenna with enhanced gain using artificial magnetic conductor surface.

作者信息

Farahat A E, AboEl-Hassan May, Hussein K F A

机构信息

Electronics Research Institute (ERI), Cairo, Egypt.

出版信息

Sci Rep. 2025 May 12;15(1):16420. doi: 10.1038/s41598-025-99233-z.

Abstract

Combining the benefits of a low profile, high gain, high efficiency, and wideband operation in a planar antenna presents a significant challenge for antenna designers. Low-profile wideband antennas often suffer from low gain. This study introduces a compact wideband artificial magnetic conducting surface (AMCS) positioned behind a wideband omnidirectional antenna to enhance its gain across the operational frequency range. This integration allows the radiating structure to achieve both high gain and wideband functionality in a single design. In this research, a wideband planar monopole printed antenna is developed to function as an omnidirectional radiator, delivering excellent impedance matching and radiation efficiency across the frequency range of 3.9-7.2 GHz (60% bandwidth) in free space. The free-standing antenna dimensions are 30 mm × 20 mm (0.39 λ × 0.3 λ), where λ corresponds to the lowest operating frequency of the antenna). It exhibits a gain ranging from 2 dBi to 4.5 dBi over this frequency band. To improve gain, a wideband AMCS is designed, consisting of just 3 × 3 unit cells with overall dimensions of 9 × 9 cm (1.1 λ × 1.1 λ). The AMCS is placed parallel to the planar antenna at a distance of 1.75 cm behind it. The gain of the AMCS-backed antenna reaches up to 9 dBi without compromising bandwidth or impedance matching. Furthermore, the radiation efficiency remains above 98% across the operational band of 3.6-7.2 GHz (66% bandwidth). The wideband antenna and AMCS are fabricated to experimentally validate the performance of the AMCS-based antenna. Measurements of impedance matching, gain, and radiation efficiency demonstrate close alignment with simulation results, confirming the effectiveness of the proposed design.

摘要

在平面天线中结合低剖面、高增益、高效率和宽带操作的优点,对天线设计师来说是一项重大挑战。低剖面宽带天线往往增益较低。本研究引入了一种紧凑的宽带人工磁导体表面(AMCS),将其放置在宽带全向天线后方,以在整个工作频率范围内提高其增益。这种集成使辐射结构能够在单一设计中实现高增益和宽带功能。在本研究中,开发了一种宽带平面单极印刷天线作为全向辐射器,在自由空间中3.9 - 7.2 GHz(60%带宽)的频率范围内具有出色的阻抗匹配和辐射效率。独立天线尺寸为30 mm×20 mm(0.39λ×0.3λ),其中λ对应于天线的最低工作频率)。在该频带内,其增益范围为2 dBi至4.5 dBi。为了提高增益,设计了一种宽带AMCS,它仅由3×3个单元组成,整体尺寸为9×9 cm(1.1λ×1.1λ)。AMCS与平面天线平行放置,位于其后方1.75 cm处。带有AMCS的天线增益可达9 dBi,同时不影响带宽或阻抗匹配。此外,在3.6 - 7.2 GHz(66%带宽)的工作频段内,辐射效率保持在98%以上。制作了宽带天线和AMCS,以通过实验验证基于AMCS的天线的性能。阻抗匹配、增益和辐射效率的测量结果与仿真结果密切吻合,证实了所提出设计的有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e5b9/12069724/2b7cf1bb2eff/41598_2025_99233_Fig1_HTML.jpg

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