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EBG Based Microstrip Patch Antenna for Brain Tumor Detection via Scattering Parameters in Microwave Imaging System

机译:基于EBG的微带贴片天线用于通过微波成像系统中的散射参数检测脑肿瘤。

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摘要

A microwave brain imaging system model is envisaged to detect and visualize tumor inside the human brain. A compact and efficient microstrip patch antenna is used in the imaging technique to transmit equivalent signal and receive backscattering signal from the stratified human head model. Electromagnetic band gap (EBG) structure is incorporated on the antenna ground plane to enhance the performance. Rectangular and circular EBG structures are proposed to investigate the antenna performance. Incorporation of circular EBG on the antenna ground plane provides an improvement of 22.77% in return loss, 5.84% in impedance bandwidth, and 16.53% in antenna gain with respect to the patch antenna with rectangular EBG. The simulation results obtained from CST are compared to those obtained from HFSS to validate the design. Specific absorption rate (SAR) of the modeled head tissue for the proposed antenna is determined. Different SAR values are compared with the established standard SAR limit to provide a safety regulation of the imaging system. A monostatic radar-based confocal microwave imaging algorithm is applied to generate the image of tumor inside a six-layer human head phantom model. S-parameter signals obtained from circular EBG loaded patch antenna in different scanning modes are utilized in the imaging algorithm to effectively produce a high-resolution image which reliably indicates the presence of tumor inside human brain.
机译:设想使用微波脑成像系统模型来检测和可视化人脑内部的肿瘤。成像技术中使用紧凑高效的微带贴片天线来发射等效信号并从分层的人头模型接收反向散射信号。电磁带隙(EBG)结构被并入天线接地层以增强性能。提出了矩形和圆形EBG结构来研究天线性能。相对于带有矩形EBG的贴片天线,在天线接地面上结合圆形EBG可以使回波损耗提高22.77%,阻抗带宽提高5.84%,天线增益提高16.53%。将CST获得的仿真结果与HFSS获得的仿真结果进行比较,以验证设计。确定所提出的天线的建模的头部组织的比吸收率(SAR)。将不同的SAR值与已建立的标准SAR限值进行比较,以提供对成像系统的安全调节。基于单雷达的共聚焦微波成像算法被应用于生成六层人体头部模型中的肿瘤图像。从圆形EBG加载的贴片天线以不同的扫描模式获得的S参数信号被用于成像算法中,以有效生成高分辨率图像,该图像可靠地指示了人脑内部肿瘤的存在。

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