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首页> 外文期刊>Journal of Computational Electronics >Computational and experimental analysis of high gain antenna for WLAN/WiMAX applications
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Computational and experimental analysis of high gain antenna for WLAN/WiMAX applications

机译:用于WLAN / WiMAX应用的高增益天线的计算和实验分析

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In this paper a new microstrip-fed planar triple-band antenna has been proposed which is applicable for wireless communication standards WLAN/WiMAX applications. The proposed antenna is composed of radiating patch loaded with open square-loop and arc slots and rectangular full length ground plane with defect on it. The geometry of the designed antenna has been parametrically analyzed and optimal dimensions are obtained through numerical computations by using a commercial electromagnetic field simulator. On the basis of conceptual design, a physical module of the antenna has been realized on ceramic filled polytetrafluoroethylene based dielectric substrate of and loss tangent, . The measurement results from the antenna prototype show dB impedance bandwidths of 630 MHz (2.16-2.79 GHz), 600 MHz (3.27-3.87 GHz) and 690 MHz (5.28-5.97 GHz) which can simultaneously cover the bandwidth requirements for all WLAN/WiMAX standards. The designed antenna exhibits nearly symmetric and omnidirectional radiations patterns over the three operating bands. The antenna prototype has shown maximum radiation gains at the frequency bands of 2.49, 3.54 and 5.6 GHz are about 5.71, 6.16, and 6.48 dBi. The experimental results are in good agreement with the results obtained from numerical computation and the designed antenna can be a good candidate for multiband operations in 2.4/5.2/5.8 GHz WLAN and 2.5/3.5/5.5 GHz WiMAX standard wireless applications.
机译:本文提出了一种新的微带馈电平面三频天线,该天线适用于无线通信标准WLAN / WiMAX应用。拟议中的天线是由辐射的贴片组成,该贴片上装有开环和圆弧形的开缝,以及矩形的全长接地平面,上面带有缺陷。已对设计天线的几何形状进行了参数分析,并使用商用电磁场模拟器通过数值计算获得了最佳尺寸。在概念设计的基础上,已经在损耗正切的陶瓷填充聚四氟乙烯基介电基板上实现了天线的物理模块。天线原型的测量结果表明,dB阻抗带宽分别为630 MHz(2.16-2.79 GHz),600 MHz(3.27-3.87 GHz)和690 MHz(5.28-5.97 GHz),可以同时满足所有WLAN / WiMAX的带宽要求标准。设计的天线在三个工作频段上呈现出几乎对称的全向辐射方向图。天线原型已显示出在2.49、3.54和5.6 GHz频带上的最大辐射增益分别约为5.71、6.16和6.48 dBi。实验结果与从数值计算获得的结果非常吻合,设计的天线可以很好地在2.4 / 5.2 / 5.8 GHz WLAN和2.5 / 3.5 / 5.5 GHz WiMAX标准无线应用中进行多频带操作。

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