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首页> 外文期刊>Scientific reports. >Electromagnetic Performances Analysis of an Ultra-wideband and Flexible Material Antenna in Microwave Breast Imaging: To Implement A Wearable Medical Bra
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Electromagnetic Performances Analysis of an Ultra-wideband and Flexible Material Antenna in Microwave Breast Imaging: To Implement A Wearable Medical Bra

机译:超宽带和柔性材料天线的电磁性能分析微波乳腺影像:要实现可穿戴式医疗文胸

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In this paper, we report a compact and ultra-wide band antenna on a flexible substrate using the 5-(4-(perfluorohexyl)phenyl)thiophene-2-carbaldehyde compound for microwave imaging. In contrast to other microwave based imaging systems, such as an array of 16 antennas, we proposed a bi-static radar based imaging system consisting of two omnidirectional antennas, which reduces complexity and the overall dimension. The proposed compact antennas are 20?×?14?mm(2) and designed for operating at frequencies from 4 to 6?GHz. To allow for implantation into a bra, the electromagnetic performances of the antennas must be considered in bending conditions. In comparison with the recently reported flexible antennas, we demonstrated both electromagnetic performance and imaging reconstruction for bending conditions. For the proof of concept, the electromagnetic performances both at flat and bending conditions have been verified using a homogeneous multilayer model of the human breast phantom. Our results demonstrate that the antenna, even at bending conditions, exhibits an excellent omni-directional radiation pattern with an average efficiency above 70% and average gain above 1?dBi, within the operational frequency band. The comprehensive aim of the realized antenna is to design a biodegradable and wearable antenna-based bra for early breast cancer detection in the future.
机译:在本文中,我们使用用于微波成像的5-(全氟己基)苯基)噻吩-2-苯甲醛化合物在柔性基板上报道紧凑型和超宽带天线。与其他基于微波的成像系统相比,例如16个天线阵列,我们提出了由两个全向天线组成的基于双静态雷达的成像系统,这降低了复杂性和整体尺寸。所提出的紧凑型天线是20?×14毫米(2),并设计用于在4到6的频率下操作.GHz。为了允许植入胸罩,必须在弯曲条件下考虑天线的电磁性能。与最近报道的柔性天线相比,我们证明了用于弯曲条件的电磁性能和成像重建。对于概念证明,使用人乳房幻影的均匀多层模型验证了平坦和弯曲条件下的电磁性能。我们的结果表明,即使在弯曲条件下,天线也表现出优异的全向辐射图案,其在操作频带内的平均效率高于70%以上的平均效率和高于1?dbi。实现天线的全面目标是在未来设计可生物降解和可携带的天线,用于早期乳腺癌检测。

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