一种新型宽频带微带贴片天线
作者:
作者单位:

陕西科技大学 电子信息与人工智能学院

中图分类号:

TN822

基金项目:

陕西省自然科学基础研究计划(2024JC-YBQN-0654)。


A Novel Broadband Patch Antenna
Author:
Affiliation:

1.School of Electronic Information and Artificial Intelligence,Shaanxi University of Science TechnologyXi’an 710021;2.China

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    摘要:

    针对微带天线带宽有限的固有不足,提出一种基于L型寄生结构的宽频带微带贴片天线。采用主辐射贴片与L型寄生贴片组合设计,整体尺寸为0.83λ?×0.83λ?×0.083λ?(λ?为中心频率5GHz对应的波长)。主辐射贴片工作在TM??模,通过L型寄生贴片电磁耦合激发多谐振点扩展带宽,选用介电常数2.2、损耗角正切0.0009的Rogers 5880介质基板降低Q值。采用180°反相差分馈电设计抑制方向图畸变。结果表明,天线在3.6-6.6GHz频段内电压驻波比小于2,相对带宽达60%,是传统微带天线的6倍;在6.2GHz峰值增益为9.8dBi,远高于一般贴片单元,工作频段内增益波动小于1.5dB;辐射方向图在3.6-6.3GHz频段内主瓣指向偏差小于5°,交叉极化抑制优于-15dB,中心频点达-38dB。该设计通过单层寄生结构实现了宽带高增益特性,适用于5G和Wi-Fi等宽带无线通信系统。

    Abstract:

    A wideband microstrip patch antenna using an L-shaped parasitic structure was developed to address the inherent narrow bandwidth limitation of conventional microstrip antennas. The antenna consists of a main radiating patch and L-shaped parasitic patches, with an overall size of 0.83λ?×0.83λ?×0.083λ?, where λ? is the free-space wavelength at the center frequency of 5 GHz. The main patch operates in the fundamental transverse magnetic (TM10) mode. Multiple resonant modes are excited through electromagnetic coupling with the parasitic elements to broaden the bandwidth. A Rogers 5880 substrate with a relative permittivity of 2.2 and a loss tangent of 0.0009 was used to reduce the quality factor. A 180-degree out-of-phase differential feeding scheme was applied to suppress pattern distortion. Simulation results show that the antenna achieves a voltage standing wave ratio (VSWR) below 2 from 3.6 GHz to 6.6 GHz, corresponding to a 60% relative bandwidth—six times wider than that of traditional designs. A peak gain of 9.8 dBi occurs at 6.2 GHz, with gain variation less than 1.5 dB across the operational band. The radiation pattern maintains main beam deviation within 5 degrees and cross-polarization levels better than -15 dB over 3.6–6.3 GHz, reaching as low as -38 dB at the center frequency. This single-layer design achieves wideband and high-gain performance, making it suitable for broadband wireless communication systems such as fifth-generation (5G) mobile networks and Wi-Fi.

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  • 收稿日期:2025-04-22
  • 最后修改日期:2025-05-08
  • 录用日期:2025-06-16
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