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Design of a Mirror Stairs Multiband Microstrip Antenna Using Defected Structures

机译:使用偏差结构设计镜面楼梯多频带微带天线

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In this article, a suggested design of mirror stairs microstrip antenna that has a planar geometry with defected structures is presented for multiband applications. The suggested antenna generates six resonance frequencies to cover 3.965 GHz (WiMAX), 7GHz, 9.188GHz (ultra-wideband, satellite)11.664GHz (space program application), 12.956GHz (indoor high-data-rate application) and 13.861 (land mobile satellite, radio navigation application) that cover the range from 2 to 17 GHz. The suggested antenna contains five rectangular slots based upon the defected ground structure (DGS) under the transmission line feed. The middle rectangular slot works as a mirror that reflects the image of the second rectangular slot. The third slot and all the rectangular slots have the same width, whereas the top side of the suggested antenna contains three rectangular strips as patch antennas based on defected microstrip structure (DMS). The suggested antenna is designed by a simulator that depends on the finite element method (FEM). The suggested antenna is printed and fabricated on double-sided substrate material that is 1.524 mm thick with an area of 45 × 40 mm2. The simulation and measurement results prove that the suggested antenna has good input impedance bandwidths as S11 ≤ −10 dB at six operating frequencies. The measurement results display good agreements with simulation results. For study purposes, we analyze the suggested antenna and simulated results compared on bandwidth, gain, efficiency, and return loss. The resultant antenna with mirror stairs shape based on DGS and DMS has improved in parameter performance mostly enhancement in bandwidth.
机译:在本文中,为多频带应用呈现了具有具有缺差结构的平面几何的镜面楼梯微带天线的建议设计。建议的天线会产生六个谐振频率,以覆盖3.965GHz(WiMAX),7GHz,9.188GHz(超宽带,卫星)11.664GHz(空间计划应用),12.956GHz(室内高数据速率应用)和13.861(陆地移动卫星,无线电导航应用程序覆盖2到17 GHz的范围。建议的天线基于传输线馈送下的缺陷的地面结构(DGS)包含五个矩形槽。中间矩形插槽用作反映第二矩形插槽的图像的镜子。第三槽和所有矩形槽具有相同的宽度,而建议天线的顶侧包含三个矩形条作为贴片天线,基于缺陷的微带结构(DMS)。建议的天线由模拟器设计,这取决于有限元方法(FEM)。建议的天线在双面基板材料上印刷和制造,厚度为1.524毫米,面积为45×40mm 2 。模拟和测量结果证明了建议的天线具有良好的输入阻抗带宽作为s 11 六个工作频率≤-10 dB。测量结果显示仿真结果的良好协议。为了学习目的,我们分析了建议的天线和模拟结果,而在带宽,增益,效率和回报损失。基于DGS和DMS的镜面形状的所得天线在参数性能中提高了带宽的增强。

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