基于SAR的乳腺癌检测系统的超宽带高增益天线阵列

M. Tayel, T. Abouelnaga, A. F. Desouky
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引用次数: 7

摘要

微波乳腺癌检测已成为一种有吸引力的癌症早期检测方法。这些系统使用定向和高效的天线来发送和接收信号。本文主要研究用于乳腺癌检测系统的超宽带、高增益、定向微带天线阵列的实现。超材料单元用于增强天线增益。在整个工作带宽范围内获得了超材料单元电池的磁导率和介电常数。基于超材料单元的性能,改变其几何形状以提高天线在特定频段的增益。提出了一种基于切比雪夫激励法的四元天线阵列,采用超宽带非等功率分配器馈电。该天线具有合理的3db波束宽度(3dBBW), 4.12 GHz时的增益分别为17.7度和14.5 dB。工作带宽(BW),从5.6 GHz扩展到10.9 GHz。对该天线进行了制作和测量,仿真结果与实测结果吻合较好。模拟了乳腺小肿瘤部位的比吸收率SAR。SAR结果清楚地显示了肿瘤在乳腺组织中的位置,从而保证了所提出的天线阵列用于癌症检测系统的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
UWB high gain antenna array for SAR based breast cancer detection system
Microwave breast cancer detection has become an attractive method for cancer early detection process. These systems uses directional and efficient antenna for transmitting and receiving signals. This paper is focused on the implementation of ultra-wideband, high gain, and directional microstrip antenna array for breast cancer detection system. Metamaterial cells are used for antenna gain enhancement purpose. Permeability and permittivity of metamaterial unit cell are obtained all over the operating bandwidth. Based on the metamaterial cell performance its geometry is altered to enhance the antenna gain at specific frequency band. Ultra wide band (UWB) unequal power divider is used to feed the proposed four elements antenna array based on Chebyshev excitation method. The proposed antenna has reasonable 3 dB beamwidth (3dBBW) and gain of 17.7 degrees and 14.5 dB at 4.12 GHz, respectively. The operating bandwidth (BW) which extends from 5.6 GHz to 10.9 GHz. The proposed antenna is fabricated, measured, and good agreement is obtained between simulated and measured results. Simulated specific absorption rate SAR is obtained and investigated for breast phantom where a small tumor is placed. The SAR results show clearly the tumor location in breast tissues which ensures the suitability of the proposed antenna array for cancer detection system.
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