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Design of a Fractal Based Wideband Antipodal Vivaldi Antenna with Improved Radiation Characteristics for Biomedical Applications

机译:基于分形的宽带抗双向VivalDi天线,具有改进的生物医学应用辐射特性

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摘要

In this communication, a novel fractal inspired antipodal Vivaldi antenna surrounded by dielectric cover is designed for biomedical applications. A step wise techniques has been used to modify the designed Vivaldi antenna's performance. First, a reference antenna is designed which is a conventional antipodal Vivaldi antenna (CAVA). Then a triangular shaped dielectric lens has been added. Finally, a Koch fractal shape dielectric cover is added to the antenna for enhancement of the directivity. The presence of this surrounding dielectric lens produces stronger radiation which enhances the gain and directivity of the antenna. The antenna is optimized using CST which shows S_(11) below -10 dB from 4.2 GHz to 45 GHz band which is applicable for medical imaging applications. The dimension of the proposed antenna is 155×66×1.524 mm~3. Results show that S_(11) characteristics and other parameters are in good agreement with the simulation counterpart.
机译:在这种通信中,由介电盖围绕的新型分形激发的反双向VivalDi天线设计用于生物医学应用。一步明的技术已被用于修改设计的VivalDi天线的性能。首先,设计了参考天线,其是传统的反双向Vivaldi天线(Cava)。然后添加了三角形电介质透镜。最后,将koch分形状介电盖添加到天线中以提高方向性。这种周围的介电镜片的存在产生较强的辐射,这提高了天线的增益和方向性。使用CST优化天线,其显示为4.2GHz至45 GHz频段低于-10 dB的S_(11),可适用于医学成像应用。所提出的天线的尺寸为155×66×1.524mm〜3。结果表明,S_(11)特性和其他参数与模拟对应物吻合良好。

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