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首页> 外文期刊>Telecommunication systems: Modeling, Analysis, Design and Management >Dual band printed patch antenna on ceramic-polytetrafluoroethylene composite material substrate for GPS and WLAN applications
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Dual band printed patch antenna on ceramic-polytetrafluoroethylene composite material substrate for GPS and WLAN applications

机译:用于GPS和WLAN应用的陶瓷-聚四氟乙烯复合材料基板上的双频段印刷贴片天线

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摘要

In this paper, a design concept of modified rectangular shape slotted patch antenna with microstrip feed is proposed for GPS and WLAN applications. The proposed simple planar design of the planar antenna is composed of partially extended radiating surface which is loaded with L-shape slot and two wide square slots. The optimized design of the antenna has overall dimension of and is fabricated on 1.905 mm thick high dielectric substrate of high frequency copper laminated ceramic composite substrate. The antenna design, simulation and parametric analysis have been performed on finite element method based full-wave 3D electromagnetic field simulation software. The experimental results show that the fabricated antenna has achieved impedance bandwidths (S11 dB) of around 780 MHz (1.13-1.91 GHz) at resonant frequency of 1.48 GHz and 1220 MHz (4.83-6.05 GHz) at resonant frequency of 5.61 GHz respectively. The gain of the fabricated antenna gives maximum value of 3.42 and 4.37 dBi for lower and upper frequency band of operations respectively. The proposed antenna shows almost consistent radiation patterns with adequate radiation efficiency over the frequency bands which make the antenna appropriate for providing services in both L1/L2 GPS and 5.2/5.8 GHz WLAN bands.
机译:本文提出了一种带微带馈源的改进型矩形缝隙贴片天线设计概念,用于GPS和WLAN应用。所提出的平面天线的简单平面设计是由部分延伸的辐射表面组成,该辐射表面装有L形槽和两个宽方形槽。天线的优化设计总尺寸为,并在1.905毫米厚的高频铜层压陶瓷复合基板的高介电基板上制造。在基于有限元方法的全波3D电磁场仿真软件上进行了天线设计,仿真和参数分析。实验结果表明,所制造的天线在1.48 GHz谐振频率下的阻抗带宽(S11 dB)约为780 MHz(1.13-1.91 GHz),在5.61 GHz谐振频率下的阻抗带宽分别为1220 MHz(4.83-6.05 GHz)。制成的天线的增益分别给出了较低和较高工作频段的最大值3.42和4.37 dBi。所提出的天线在频带上显示出几乎一致的辐射图,并具有足够的辐射效率,这使得该天线适合在L1 / L2 GPS和5.2 / 5.8 GHz WLAN频带中提供服务。

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