Reflectarray antenna for breast cancer detection and biomedical applications

Khaled Hasan, M. El hadidy, H. Morsi
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引用次数: 4

Abstract

The main objective of this paper is to design a very directive reflectarray antenna (RA) for biomedical imaging applications and breast cancer detection. The RA consists of a horn antenna as a feeder and a reflection surface based on double ring (DR) unit cell that achieves 350° phase range at a resonant frequency of 2.2 GHz. The designed RA is a pencil beam antenna with a high directivity gain of 19.6 dBi, small Half-Power-Beamwidth (HPBW) of and low Side-Lobe Level (SLL) of -15.9 dB compared to the horn antenna with a directivity gain of 6.5 dBi, HPBW of 109° and Side-Lobe Level of -12.3 dB. A fair comparison between the RA and the horn antenna is presented based on a 3D EM simulation with respect to Bio Tissue/Fat material box and human breast model as well. The designed RA achieves larger penetration depth and smaller power loss density/specific absorption rate (PLD/SAR) comparing with the horn antenna. Furthermore, it provides a higher resolution and a smaller angular scanning capability.
用于乳腺癌检测和生物医学应用的反射天线
本文的主要目的是为生物医学成像应用和乳腺癌检测设计一种非常有指导性的反射天线。该天线由作为馈线的喇叭天线和基于双环(DR)单元的反射面组成,在2.2 GHz的谐振频率下实现350°相位范围。与方向性增益为6.5 dBi、半功率波束宽度(HPBW)为109°、旁瓣电平为-12.3 dB的喇叭天线相比,所设计的RA是一种具有高指向性增益19.6 dBi、小半功率波束宽度(HPBW)和低旁瓣电平(SLL) (-15.9 dB)的铅笔波束天线。基于生物组织/脂肪材料盒和人体乳房模型的三维EM仿真,对RA和喇叭天线进行了比较。与喇叭天线相比,设计的RA具有更大的穿透深度和更小的功率损耗密度/比吸收率(PLD/SAR)。此外,它提供了更高的分辨率和更小的角度扫描能力。
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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