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用于C波段、低于6GHz的5G和工业、科学与医疗(ISM)应用的紧凑型频率捷变和模式可重构天线。

Compact Frequency-Agile and Mode-Reconfigurable Antenna for C-Band, Sub-6-GHz-5G, and ISM Applications.

作者信息

Ali Esraa Mousa, Awan Wahaj Abbas, Abbas Anees, Abbas Syed Mujahid, Mohamed Heba G

机构信息

Faculty of Engineering, Communications and Computer Engineering Department, Al-Ahliyya Amman University, Amman 19111, Jordan.

Department of Information and Communication Engineering, Chungbuk National University, Cheongju 28644, Republic of Korea.

出版信息

Micromachines (Basel). 2025 Jun 19;16(6):724. doi: 10.3390/mi16060724.

Abstract

This article presents the design and evaluation of a compact-sized antenna targeting heterogenous applications working in the C-band, 5G-sub-6GHz, and the ISM band. The antenna offers frequency reconfigurability along with multi-operational modes ranging from wideband to dual-band and tri-band. A compact-sized antenna is designed initially to cover a broad bandwidth that ranges from 4 GHz to 7 GHz. Afterwards, various multiband antennas are formed by loading various stubs. Finally, the wideband antenna along with multi-stub loaded antennas are combined to form a single antenna. Furthermore, PIN diodes are loaded between the main radiator and stubs to activate the stubs on demand, which consequently generates various operational modes. The last stage of the design is optimization, which helps in achieving the desired bandwidths. The optimized antenna works in the wideband mode covering the C-band, Wi-Fi 6E, and the ISM band. Meanwhile, the multiband modes offer the additional coverage of the LTE, LTE 4G, ISM lower band, and GSM band. The various performance parameters are studied and compared with measured results to show the performance stability of the proposed reconfigurable antenna. In addition, an in-depth literature review along with comparison with proposed antenna is performed to show its potential for targeted applications. The utilization of FR4 as a substrate of the antenna along with its compact size of 15 mm × 20 mm while having multiband and multi-mode frequency reconfigurability makes it a strong candidate for present as well as for future smart devices and electronics.

摘要

本文介绍了一种紧凑型天线的设计与评估,该天线适用于在C波段、5G亚6GHz频段和ISM频段工作的异构应用。该天线具有频率可重构性以及从宽带到双频段和三频段的多种工作模式。最初设计了一种紧凑型天线,以覆盖4GHz至7GHz的宽带宽。之后,通过加载各种短截线形成了各种多频段天线。最后,将宽带天线与多短截线加载天线组合形成单个天线。此外,在主辐射器和短截线之间加载PIN二极管,以便按需激活短截线,从而产生各种工作模式。设计的最后阶段是优化,这有助于实现所需的带宽。优化后的天线在覆盖C波段、Wi-Fi 6E和ISM频段的宽带模式下工作。同时,多频段模式还额外覆盖了LTE、LTE 4G、ISM低频段和GSM频段。研究了各种性能参数并与测量结果进行比较,以展示所提出的可重构天线的性能稳定性。此外,还进行了深入的文献综述,并与所提出的天线进行比较,以展示其在目标应用中的潜力。使用FR4作为天线的基板,其尺寸紧凑,为15mm×20mm,同时具有多频段和多模式频率可重构性,这使其成为当前以及未来智能设备和电子产品的有力候选者。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/12a9/12195069/61db7d84aaff/micromachines-16-00724-g001.jpg

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