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Electronic bandgap miniaturized UWB antenna for near-field microwave investigation of skin

机译:用于近场微波调查皮肤的电子带隙小型UWB天线

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Near-field microwave investigation and tomography has many practical applications, especially where the trend of fields and signals in different environments is vital. This article shows an elliptical patch ultra-wideband antenna fed by a transmission line for the near-field characterization of cancerous cells in the skin. The antenna comprises an elliptical patch, stub loading to shift the band to lower bands, and an electronic bandgap structure on the ground side. Even though the antenna has a low profile of 15 × 15?mm 2 , the proposed antenna has more promising results than recent studies. Furthermore, both simulated near-field and far-field results show a broad bandwidth of 3.9–30?GHz and a resonance at 2.4?GHz applicable for industrial, scientific, and medical band applications. The proposed antenna also illustrates a peak gain of 6.48 dBi and a peak directivity of 7.09 dBi. Free space and skin (on a layer of breast fat and a tumor with a diameter of 4?mm at the boundary of skin and breast) are used as test environments during the simulation and measurement of near-field and far-field investigations while considering a phantom breast shape. Both far-field and near-field microwave investigations are performed in Computer Simulation Technology studio, and results are then compared with the measured data. The simulated and measured results are in good agreement, and the focused energy around the tumor is completely reconstructed. Therefore, the proposed antenna can be an adequate candidate for the differentiation of breast skin and tumor to reconstruct the tumor’s image.
机译:近场微波调查和断层扫描具有许多实际应用,特别是在不同环境中的域和信号的趋势至关重要的地方。本文显示了由传输线供给的椭圆形贴片超宽带天线,用于皮肤中癌细胞的近场表征。天线包括椭圆形贴片,将带子移入下带的短管加载,以及地面上的电子带隙结构。尽管天线具有15×15Ωmm2的低轮廓,所提出的天线的结果比最近的研究更有前景。此外,模拟近场和远场结果都显示出3.9-30的宽带宽,并且适用于工业,科学和医疗乐队应用的广泛带宽和谐振。所提出的天线还示出了6.48dBi的峰值增益和7.09dBi的峰值方向性。自由空间和皮肤(在皮肤和乳房的边界的乳腺脂肪和直径为4Ωmm的肿瘤上)用作在考虑的近场和远场调查期间的测试环境幻影乳房形状。远场和近场微波调查都在计算机仿真技术工作室进行,然后将结果与测量数据进行比较。模拟和测量结果非常一致,并且完全重建肿瘤周围的聚焦能量。因此,所提出的天线可以是用于分化乳腺皮肤和肿瘤的足够候选者以重建肿瘤的形象。

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