Multilayered metamaterials array antenna based on artificial magnetic conductor's structure for the application diagnostic breast cancer detection with microwave imaging

被引:33
作者
Zerrad, Fatima-ezzahra [1 ]
Taouzari, Mohamed [2 ]
Makroum, El Mostafa [1 ]
El Aoufi, Jamal [3 ]
Tarikul Islam, Mohammad [4 ]
Ozkaner, Vedat [5 ]
Abdulkarim, Yadgar, I [6 ]
Karaaslan, Muharrem [6 ]
机构
[1] Hassan First Univ Settat, Fac Sci & Tech, Lab IMII, Settat, Morocco
[2] Hassan First Univ Settat, Natl Sch Appl Sci, Lab LISA, Berrechid, Morocco
[3] Mohammed VI Int Acad Civil Aviat, Lab Aeronaut Telecommun, Nouaceur, Morocco
[4] Univ Illinois, Dept Bioengn, Chicago, IL USA
[5] Iskenderun Tech Univ, Elect Elect Engn, Antakya, Turkey
[6] Charmo Univ, Coll Med & Appl Sci, Appl Phys Dept, Chamchamal 46023, Iraq
关键词
Ultra-wideband; Microwave imaging; Breast tumor; Modified split ring resonator; Array antenna; Metamaterial; Artificial Magnetic Conductors;
D O I
10.1016/j.medengphy.2021.103737
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
In this work, a small multilayer ultra-wideband (UWB) patch antenna for microwave breast imaging (MWI) applications was developed both theoretically and experimentally. However, to improve the antenna performance relating to the bandwidth (BW), the radiating element of the suggested initial antenna is modified by adding a modified split ring resonator (SRR) and slits in the patch as well as the ground plane. Then, to achieve the requisite antenna properties for MWI applications such as the gain and directivity, the antenna is equipped with a uniplanar artificial magnetic conductor (AMC) structure made up of a 3 x 3 array of square modified SRR unit cells. The final proposed prototype has a relatively small size of 20 x 19 x 1.6 mm3 and it accomplishes a return loss below -10 dB (S11< -10 dB) at overall BW of 7 GHz (4.1 - 9.7 GHz) with more than 5 dBi realized gain. In this way, the characteristics of the fabricated antenna are measured to examine the antenna performance. Indeed, the fidelity factor of face-to-face (FtF) and side-by-side (SbS) scenarios are also noticed for the same frequency range. In the final analysis, a simulation model of the antennas, which operate as a transceiver, and a breast phantom model with tumor sample are proposed for detecting cancerous tumor cells within the breast. Hence, the proposed design is suitable in the biomedical applications such as tumor cell detection.
引用
收藏
页数:13
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