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Statistical Modelling of Aperture Coupled Microstrip Patch Antenna; Simulation to Fabrication

机译:孔径耦合微带贴片天线的统计建模;模拟加工

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Design and fabrication of resonant aperture coupled patch antennas at a particular frequency is a complex and difficult process because of the intrications involved in multilayer architecture. The design process requires correct formulations relating the output to input variables. In this paper we undertook the task to confront the design problems of electromagnetically aperture coupled patch antenna. Design methodology of antenna is presented taking all the parameters subjectively. The system parameters related to patch length and slot length are evaluated by CST and modeled to support the communication in extreme temperature constraints. For simulation, the polarization is linear and working frequency is 2.4 GHz. The novel approach in this design is that we have developed statistical equations to find the relationship between patch length, slot length, S11 to obtain best values of them at resonant working frequency. The computer-generated antenna has also been fabricated and is available to be used at the front end of RF transceiver.
机译:由于多层架构中的复杂性,在特定频率下谐振孔径耦合贴片天线的设计和制造是一个复杂而困难的过程。设计过程需要正确的公式,将输出与输入变量相关联。在本文中,我们承担了面对电磁孔径耦合贴片天线设计问题的任务。主观考虑了所有参数,提出了天线的设计方法。与贴片长度和插槽长度相关的系统参数由CST评估,并进行建模以支持极端温度限制下的通信。为了进行仿真,极化是线性的,工作频率是2.4 GHz。此设计中的新颖方法是,我们已经开发出统计方程,以找到贴片长度,缝隙长度和S11之间的关系,从而在谐振工作频率下获得它们的最佳值。计算机生成的天线也已制造出来,可用于RF收发器的前端。

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