超宽带应用中馈源点位置对贴片天线回波损耗和带宽的影响

Md. Firoz Ahmed, M. Kabir, A. Z. M. T. Islam
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引用次数: 0

摘要

近年来,通信行业对小型化、轻量化和高性能天线的需求不断增加。微带贴片天线(MPA)成为有效满足这些要求的较好选择。在MPA设计中,采用局部接地平面、开槽贴片和缺陷接地结构的混合技术,降低了天线的回波损耗,实现了良好的阻抗匹配,提高了天线的带宽、增益和效率。本研究论证了天线设计中至关重要的馈电点位置的改变对贴片天线的影响,并通过比较所设计天线的最小回波损耗(S11)来确定合适的馈电点位置,从而实现天线的最高性能。利用高频结构模拟器(HFSS)软件对贴片天线进行设计和仿真。该天线的工作频率为6.85 GHz,适用于超宽带应用(3.1-10.6 GHz)。天线采用尺寸为30mm × 20mm的FR4环氧基板材料设计。它的介电常数为4.4,厚度为0.8 mm,正切损耗为0.02。观察到多个谐振频率在每个馈电位置具有不同的回波损耗。分析表明,最佳馈电点位于贴片中心(9,0),回波损耗极低(-28.35 dB),阻抗带宽高(19.7 GHz)。该天线的增益为4.46 dB,指向性为4.6904 dB,辐射效率为95.90%。因此,馈源点的位置可以作为天线设计的一个影响因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of Feed Point Position on Patch Antenna’s Return Loss and Bandwidth for UWB Applications
The demand for compact, lightweight, and high-performance antennas has increased in recent times in the communication industry. Microstrip patch antenna (MPA) becomes a better choice to effectively fulfill these requirements. In this study, hybrid techniques of partial ground plane, slotted patch, and defective ground structure are employed in MPA design to reduce the return loss, good impedance matching, and increased the bandwidth, gain, and efficiency of the antenna. This research demonstrates the impact of altering the feed point position, a crucial phenomenon of antenna design, on the patch antenna and determines the proper feed point location by comparing a minimum return loss (S11) which achieves the highest performance for the designed antenna. High-frequency structure simulator (HFSS) software is used to design and simulate the patch antenna. The operating frequency of the antenna is 6.85 GHz for UWB applications (3.1–10.6 GHz). A FR4 epoxy substrate material with dimensions of 30 mm × 20 mm is used to design the antenna. It has a dielectric constant of 4.4, a thickness of 0.8 mm and a tangent loss of 0.02. Multiple resonant frequencies are observed with different return losses for each feed location. The analysis shows that the finest feeding point is found at the center of the patch (9, 0) with a very low return loss (-28.35 dB), and a high impedance bandwidth (19.7 GHz). The antenna also achieved a gain of 4.46 dB, a directivity of 4.6904 dB, and a radiation efficiency of 95.90%. Hence, the location of the feed point can be considered as an influential factor in the antenna design.
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