Design and Simulation of X-Band Micromachined Microstrip Antenna

M.F. Islam, M. Ali, B. Majlis
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引用次数: 2

Abstract

There is an increasing demand for newer microwave and millimeter-wave systems to meet the emerging telecommunication challenges with respect to size, performance and cost. Micro electro mechanical systems (MEMS) have several desirable features, including small size, high performance, low power consumption and low loss. This paper presents an X- band probe fed small rectangular microstrip patch antenna based on high-resistivity silicon substrate which is capable to reduce the dimensions of the antenna. The antenna was designed on 0.375 mm-thik substrate using microstrip technology followed by probe feeding technique. Microstrip and probe feeding technique offer easy fabrication process using MEMS technology. The design and simulation of the antenna were performed using 3D full wave electromagnetic simulator IE3D. The antenna with a bandwidth of 118.14 MHz and a center frequency of 9.6 GHz which is within the allowable specturm (9.5-9.8 GHz) for Earth Exploration Satellite System (EESS) was simulated successfully.
x波段微带天线的设计与仿真
人们对新型微波和毫米波系统的需求不断增加,以满足在尺寸、性能和成本方面出现的电信挑战。微机电系统(MEMS)具有小尺寸、高性能、低功耗和低损耗等优点。本文提出了一种基于高电阻率硅衬底的X波段探针馈电小型矩形微带贴片天线,可以减小天线的尺寸。采用微带技术和探针馈送技术,在0.375 mm厚的衬底上设计了天线。微带和探针馈送技术提供了使用MEMS技术的简单制造工艺。利用三维全波电磁模拟器IE3D对天线进行了设计和仿真。对带宽为118.14 MHz、中心频率为9.6 GHz、在地球探测卫星系统(EESS)允许频谱(9.5 ~ 9.8 GHz)范围内的天线进行了仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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