Automated Sierpinski Gasket Model using Mathematical Formulations for Ku and K Band Applications

Lakshmi bhavaniK, P. Siddaiah
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引用次数: 0

Abstract

: Fractal Antenna are embeds the different scenario of the antenna structures such M, C, O, Triangle, Step, star, and hexagonal etc. in practical application choice of interest. The design scenario improvised with frequency of operation of the different bands ensuring the correct size of the patch, and substrate with design criteria from the mathematical f ormulations. The proposed Antenna utilizes the Sierpiński gasket with the iteration varying from 0, 1, 2, 3 and 4. The design factor for the size of the antenna is calculated using the mathematical formulations with cut-off frequency at 15, and 17 GHz. This antenna improvised with two set of transmission line with the iteration from 0-1, 3-4 as step induced transmission line, and M shaped transmission line patch as generalist view. The novelty of design model utilizes the python as automated model for each set of iteration criteria and gaps from each subset of Sierpiński gasket. Each set of the antenna parametric values are observed with antenna design lying the Ku and Ka respectively
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自动谢尔宾斯基垫片模型使用数学公式为Ku和K波段的应用
分形天线是嵌入不同场景的天线结构,如M, C, O,三角形,阶梯,星形,六角形等在实际应用中感兴趣的选择。设计方案根据不同波段的操作频率即兴制定,以确保贴片的正确尺寸,并根据数学公式设计衬底标准。所提出的天线利用Sierpiński垫圈,迭代从0、1、2、3和4变化。采用截止频率分别为15 GHz和17 GHz的数学公式计算天线尺寸的设计系数。该天线临时采用两组传输线,其中0-1、3-4为阶跃诱导传输线,M形传输线贴片为通用化视图。设计模型的新颖性利用python作为每组迭代标准和Sierpiński垫圈每个子集的间隙的自动化模型。每组天线参数值分别以Ku和Ka的天线设计进行观测
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