Design of planar antenna using micro strip feed for biomedical applications 

M. Keerthana, M. Subashini, M. Susmita, M. Vinotha
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引用次数: 1

Abstract

A compact 3D stacked patch antenna is presented for microwave head imaging application. Stacked patch technique is utilized to achieve unidirectional radiation pattern and folding technique is used to achieve resonance at lower frequency that are the requirements for imaging system. Shorting wall is introduced to minimize the overall antenna structure. The proposed antenna resonance frequency is 2.65– 2.91 GHz with an average gain of 6.6 dBi at 2.7 GHz. The dimension of the antenna is 25 × 25 × 10.5 mm 3 . The operating frequency of the proposed antenna is suitable for human brain imaging. The sensor characteristic of the proposed antenna is affiliated via connection with the imaging entity, miniaturized dimension and high radiation efficiency. Raster scanning is deployed to achieve the 2D image of the target phantom and it is shown that the proposed highly directional antenna can detect tumor inside the human brain phantom.
生物医学用微带馈电平面天线的设计
提出了一种适用于微波头部成像的小型三维堆叠贴片天线。利用堆叠贴片技术实现单向辐射方向图,利用折叠技术实现成像系统所需的低频共振。为了减小天线的整体结构,引入了短壁。该天线谐振频率为2.65 ~ 2.91 GHz, 2.7 GHz时平均增益为6.6 dBi。天线尺寸为25 × 25 × 10.5 mm 3。该天线的工作频率适合于人脑成像。该天线具有与成像实体连接、尺寸小型化、辐射效率高等传感器特性。采用栅格扫描实现了目标脑幻象的二维图像,实验结果表明,所提出的高定向天线可以检测人脑幻象内部的肿瘤。
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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