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A Vivaldi Antenna Palm Tree Class with Koch Square Fractal Slot Edge for Near-Field Microwave Biomedical Imaging Applications

机译:具有科赫方形分形槽边缘的Vivaldi天线棕榈树类,用于近场微波生物医学成像应用

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摘要

This article presents the modeling of an antipodal Vivaldi antenna (AVA), Palm Tree Class, with radiating fractal slot edge (FSE), in the form of a Koch Square Fractal (SK), labeled as SK-FSE-AVA. The surface currents of the proposed antenna are analyzed, as well as the return loss, directivity, squint, side lobe level (SLL), and Main Lobe (ML) gain. Improvement on directivity is observed when compared to an AVA, with 8.41 dB of gain in the main lobe at 4 GHz, SLL of 11.70 dB, and the squint of 0.10°. SK-FSE-AVA has 9.23 dB of gain in the main lobe at 4 GHz, SLL of –13.50 dB, and the squint of 0.2°. This antenna could be used in ultra-wideband (UWB) systems for applications on Near-Field Microwave Imaging (NMI). To show the feasibility of this application, a 3D numerical simulation of a model containing lung tissue with a malignant tumor is presented, using the proposed antenna and the respective imaging results.
机译:本文以棕榈树形的对角式维瓦尔第天线(AVA)进行建模,其辐射形式为分形槽边缘(FSE),形式为科赫方波分形(SK),标记为SK-FSE-AVA。分析了所建议天线的表面电流,以及回波损耗,方向性,斜视,旁瓣电平(SLL)和主瓣(ML)增益。与AVA相比,方向性有所改善,在4 GHz时主瓣的增益为8.41 dB,SLL为11.70 dB,斜视为0.10°。 SK-FSE-AVA在4 GHz时的主瓣增益为9.23 dB,SLL为–13.50 dB,斜视为0.2°。该天线可用于超宽带(UWB)系统中,用于近场微波成像(NMI)。为了显示该应用的可行性,使用提出的天线和相应的成像结果,提出了包含具有恶性肿瘤的肺组织的模型的3D数值模拟。

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