首页> 外文期刊>International journal of RF and microwave computer-aided engineering >Coplanar waveguide-fed electrically small dual-polarized short-ended zeroth-order resonating antenna using Ω-shaped capacitor and single-split ring resonator for GPS/WiMAX/WLAN/C-band applications
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Coplanar waveguide-fed electrically small dual-polarized short-ended zeroth-order resonating antenna using Ω-shaped capacitor and single-split ring resonator for GPS/WiMAX/WLAN/C-band applications

机译:使用Ω形电容器和单裂环谐振器的共面波导馈电小型双极化短端零阶谐振天线,用于GPS / WiMAX / WLAN / C频段应用

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摘要

This work explains the design and analysis of a triple-band electrically small (ka = 0.56 < 1) zeroth-order resonating (ZOR) antenna with wideband circular polarization (CP) characteristics. The antenna compactness is obtained due to ZOR frequency of composite right/left-handed (CRLH) transmission line (TL) and wideband CP radiation are achieved due to the introduction of single-split ring resonator and asymmetric coplanar waveguide fed ground plane. The proposed antenna obtains an overall electrical size including the ground plane of 0.124 lambda(0) x 0.131 lambda(0) x 0.005 lambda(0) at 1.58 GHz and physical dimension of 23.7 x 25 x 1 mm(3) are achieved. The antenna provides a size reduction of 44.95% compared to a conventional monopole antenna. The novelty behind the ohm-shaped capacitor is the generation of extra miniaturization with better antenna compactness. The antenna provides dual-polarized radiation pattern with linear polarization radiation at 1.58 and 3.54 GHz, wideband CP radiation at 5.8 GHz. The antenna measured results shows good impedance bandwidth of 5%, 6.21%, and 57.5% for the three bands centered at 1.58, 3.54, and 5.8 GHz with a wider axial ratio bandwidth (ARBW) of 25.47% is obtained in the third band. The antenna provides a higher level of compactness, wider ARBW, good radiation efficiency, and wider S-11 bandwidth. Hence, the proposed antenna is suitable for use in GPS L1 band (1.565-1.585 GHz), WiMAX 3.5 GHz (3.4-3.8 GHz) GHz, WLAN 5.2/5.8 GHz (5.15-5.825 GHz), and C-band (4-8 GHz) wireless application systems.
机译:这项工作解释了具有宽带圆极化(CP)特性的三频带电小(ka = 0.56 <1)零阶谐振(ZOR)天线的设计和分析。天线的紧凑性得益于左/右复合(CRLH)传输线(TL)的ZOR频率,并且由于引入了单裂环谐振器和非对称共面波导馈电接地平面,实现了宽带CP辐射。所提出的天线获得的总体电气尺寸包括在1.58 GHz时的接地平面为0.124 lambda(0)x 0.131 lambda(0)x 0.005 lambda(0),物理尺寸为23.7 x 25 x 1 mm(3)。与传统的单极天线相比,该天线尺寸减小了44.95%。欧姆形电容器背后的新颖之处在于产生了超小型化,并具有更好的天线紧凑性。该天线提供双极化辐射方向图,线性极化辐射在1.58和3.54 GHz处,宽带CP辐射在5.8 GHz。天线测量结果显示,对于以1.58、3.54和5.8 GHz为中心的三个频段,良好的阻抗带宽分别为5%,6.21%和57.5%,在第三频段中获得了25.47%的更宽的轴向比率带宽(ARBW)。该天线具有更高的紧凑度,更宽的ARBW,良好的辐射效率和更宽的S-11带宽。因此,建议的天线适用于GPS L1频段(1.565-1.585 GHz),WiMAX 3.5 GHz(3.4-3.8 GHz)GHz,WLAN 5.2 / 5.8 GHz(5.15-5.825 GHz)和C频段(4- 8 GHz)无线应用系统。

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