卫星用同轴探头馈电椭圆微带贴片天线的设计与仿真

V. Prakasam, N. Reddy
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引用次数: 4

摘要

本文采用同轴探针馈电方法,设计并仿真了ISM波段的椭圆微带贴片天线。本文在2.4 GHz ~ 2.5 GHz标准ISM频段加工了一种新型椭圆微带贴片(MSPA)天线。规划和模拟的EMSPA工作频率为2.4 GHz至2.5 GHz和4.2、4.4、4.6和4.8 FR4衬底,该选择的频率在S11和合理增益值方面提高了效率。在本研究中,同轴探头馈送固定在介电常数为4.2、4.4、4.6和4.8的FR-4衬底材料上的天线,衬底厚度为6.6 mm。本天线的目的是确定在2.35 GHz、2.4 GHz、2.45GHz和2.5 GHz不同工作频率下的高增益、低S11,即ISM频段范围。火箭、舰船、导弹、卫星等高性能系统均采用椭圆微带贴片天线。椭圆微带贴片的最佳测量天线作为圆极化波辐射体。有FEKO、IE3D、CST、HFSS、antenna Magus、MATLAB等多种仿真天线设计软件。本文利用MATLAB仿真软件对EMSPA进行了设计和仿真,并对其s参数、驻波比、EH场、辐射方向图、电流分布、增益、仰角和方位辐射方向图等性能特性进行了估计。
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Design and Simulation of Elliptical Micro strip Patch Antenna with Coaxial Probe Feeding for Satellites Applications Using Matlab
This paper uses coaxial probe feed method to present, design, and simulate elliptical microstrip patch antenna at ISM band. This paper processes an innovative elliptical microstrip patch (MSPA) antenna at standard ISM frequency band ranges from 2.4 GHz to 2.5 GHz. The planned and simulated EMSPA operating frequency is 2.4 GHz to 2.5 GHz and 4.2, 4.4, 4.6 & 4.8 FR4 substrate, this selected frequency increases efficiency in terms of S11 and reasonable gain value. In this study, coaxial probes feed the proposed antenna fixed on an FR-4 substrate material which has 4.2, 4.4, 4.6 & 4.8 dielectric constant, substratum thickness is 6.6 mm. The intension of the proposed antenna is that to determine the higher gain, less S11 at different operating frequencies that are 2.35 GHz, 2.4 GHz, 2.45GHz and 2.5 GHz, which is the ISM band range. The high-performance systems such as rockets, ships, missiles and satellites use elliptical microstrip patch antennas. Antennas with optimal measurements of elliptical microstrip patches act as circularly polarized wave radiators. Various simulation antenna design software is available, such as FEKO, IE3D, CST, HFSS, Antenna Magus and MATLAB. Here, using MATLAB simulation software tool, the EMSPA is designed and simulated and also estimate the performance characteristics, such as s-parameter, vswr, EH fields, radiation pattern, current distribution, gain, elevation and azimuthal radiation pattern.
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