多波段无线应用三角形衬垫对角槽嵌入式分形贴片天线的分析与开发

Muhammad N. Khalid, Kamran Raza
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引用次数: 0

摘要

提出了一种适用于多波段无线应用的小尺寸斜槽内嵌三角形垫片分形贴片天线。在三角形贴片天线中嵌入对角槽几何结构,以减小基本单元的初始尺寸,并通过对单元进行三阶分形来实现进一步的小型化。针对S、C和X频段的WiFi、WiMAX和WLAN(无线局域网)应用,优化了2.4、6.5和9.23 GHz三个频率共振。与三角形贴片天线相比,天线总面积减小55.32%,剩余铜包层减小80.74%。在HFSS(高频结构模拟器)和CST(计算机仿真技术)中完成天线3D(三维)建模,仿真和优化所需的BW(带宽)和增益要求。从对角槽长度和宽度随频率响应变化的角度分析了在基本三角形单元中嵌入对角槽的效果。微带馈线尺寸和与辐射顶层的地平面间距进行了优化,以实现所需多重谐振的可接受bw小于-10 dB。给出了电磁场、h场、电流密度和表面电流图来验证多波段无线应用的辐射。制作了槽嵌入分形辐射器,并将测量的频率响应和增益模式与仿真结果进行了比较,以验证该概念。
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Analysis and Development of Triangular Gasket Diagonal Slot Embedded Fractal Patch Antenna for Multiband Wireless Applications
This paper presents novel reduced size diagonal slot embedded Triangular Gasket fractal patch antenna for multiband wireless applications. The diagonal slot geometry is embedded in triangular patch antenna for initial size reduction of the basic cell and further miniaturization is achieved by fractalization of the cell upto third order. Three frequency resonances of 2.4, 6.5 and 9.23 GHz are optimized for WiFi, WiMAX and WLAN (Wireless Local Area Network) applications in the S, C and X frequency bands. Size reduction upto 55.32 and 80.74% is achieved in terms of whole antenna area and copper cladding remaining respectively in comparison to triangular patch antenna. Antenna 3D (Three-Dimensional) modeling, simulation and optimization for the desired BW (Bandwidth) and gain requirements are done in HFSS (High Frequency Structure Simulator) and CST (Computer Simulation Technology). Effects of embedding diagonal slot in the basic triangular cell is analyzed in terms of the diagonal slot length and width with corresponding frequency response variations. Microstrip feed line dimensions and ground plane separation from the radiating top layer is optimized for achieving acceptable BWs less than -10 dB for the desired multiple resonances. E-field, H-field, current density and surface current plots are presented to verify the radiations for multiband wireless applications. Proposed slot embedded fractal radiator is fabricated and measured frequency responses and gain patterns are demonstrated in comparison with simulated results for verification of the concept.
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