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Microstrip Fractal MultiBand Antenna Design and Optimization by using DGS Technique for Wireless Communication

机译:微带分形多频天线天线设计与使用DGS技术进行无线通信

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This article presents a multi-band microstrip fractal antenna using the Defected Ground Structure (DGS) technique. It is used for the self-affine property of fractal geometry. The geometry is applied to the ground plane of the microstrip antenna and a maximum of two iterations have been performed on the antenna. The antenna resonated at the range of five multi-band frequencies having 2–8 GHz frequency bands and also useful for military, telecommunication and C-band frequency applications. These applications include the operations such as Wi-Fi, Radio Detection & Ranging, and satellite communications. All designed antennas are optimized by IE3D simulation tool and designed with Fire Retardant-4 epoxy (FR-4) material having dielectric constant= 4.4, thickness=1.6mm and loss tangent =0.02. By placing rectangular fractal structures in the ground plane (DGS) the different parameters of all antennas have been studied in terms of efficiency of antenna radiation, bandwidth, VSWR, gain, return loss, and resonant frequency. The recommended microstrip antenna exhibits a multi-band, simple structure with a low-costdielectric material and the overall size has been reduced.
机译:本文介绍了一种使用偏向的地面结构(DGS)技术的多频带微带分形天线。它用于分形几何的自助性特性。几何形状被施加到微带天线的接地平面,并且已经在天线上执行了最多两个迭代。天线在具有2-8GHz频带的五个多频带频率的范围内谐振,也可用于军事,电信和C波段频率应用。这些应用包括Wi-Fi,无线电检测和测距和卫星通信等操作。所有设计的天线都由IE3D仿真工具进行优化,并设计具有具有介电常数= 4.4,厚度= 1.6mm的介电常数= 4.4的阻燃剂-4环氧(FR-4)材料和变形= 0.02。通过将矩形分形结构放置在接地平面(DGS)中,在天线辐射,带宽,VSWR,增益,返回损耗和谐振频率的效率方面已经研究了所有天线的不同参数。推荐的微带天线具有多带,具有低成本电质材料的简单结构,并且整体尺寸已降低。

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