面向下一代通信应用的微带贴片天线设计与仿真

Amit Gupta, Abhishek Kumar, M. Mamatha, Shravani Kalkonda
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引用次数: 2

摘要

微带贴片天线以其重量轻、制作简单、成本低等特点在移动设备中广受欢迎。该天线采用比例介电函数为4.4、破坏正切为0.02的FR-4环氧树脂,由单共馈上的6个偶极子组成。基板尺寸为15.1794mm × 18.25mm × 1.5 mm。工作范围为1 GHz-75GHz,即从L频段到V频段,最大回波损耗为- 43.67 dB,最大增益为5.72dB。对于相同的设计,采用近似介电常数为2.2、意外正切为0.0009的Rogers和偶然介电常数为6.15、意外正切为0.03的Arlon作为衬底材料,以获得最佳特性。膜片天线电位特性与谐振频率相同,分析时考虑了回波损耗、增益、带宽、驻波比、指向性等因素。在Rogers材料中,最大回波损耗为−23.51dB,最大增益为8.66dB;在Arlon材料中,最大回波损耗为−34.64dB,最大增益为9.82dB。因此,根据特定的衬底材料,新生成的天线可以有助于多个宽带的利用。
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Design and Simulation of Microstrip Patch Antenna for Next Generation Communication Applications
Microstrip patch antenna is adopted considering domestic along with utilization, popularly for mobile as it is light weight, simple to build and low cost. The proposed antenna consists of six dipoles on single common feed, FR-4 Epoxy whose proportionate dielectric function is 4.4 and destruction tangent is 0.02 is used for proposed design. The dimensions for the substrate are 15.1794mm x 18.25mm x 1.5 mm. It is intended to be operated in 1 GHz–75GHz i.e., from L band to V band with a maximum return loss of −43.67 dB and with a maximum Gain of 5.72dB. For the same design, Rogers whose approximate permittivity is 2.2 and casualty tangent is 0.0009 and Arlon whose contingent permittivity is 6.15 and catastrophe tangent is 0.03 used as substrate materials for the optimal characteristics. Patch aerial potential characteristics are in same manner with resonant frequencies, return loss, gain, bandwidth, VSWR, directivity are taken into account for the analysis of proposed antenna. In Rogers material, maximum return loss of −23.51dB with a maximum gain of 8.66dB and in Arlon material, maximum return loss of −34.64dB with a maximum gain of 9.82dB are measured from HFSS software. The newly generated antenna can therefore, be helpful for multiple wide band utilization depending on the particular substrate material.
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