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Mutual Coupling Reduction in Wideband Electromagnetic Medical Imaging Antenna Array Using Compact Electromagnetic Band Gap

机译:具有紧凑型电磁带隙的宽带电磁医学成像天线阵列的互联耦合

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A compact, low profile, and wideband electromagnetic band gap (EBG) unit cell for mutual coupling reduction between antennas of electromagnetic medical imaging is proposed. The EBG unit cell is designed on a 3-mm thick polymer RTV6166 substrate and consists of a square patch (14×14 mm~2) with four symmetrically L-slot. The EBG unit cell is characterized using suspended transmission line method. It achieves fractional stopband bandwidth of 101.3%, which covers the low microwave frequency band from 1.18 GHz to 2.7 GHz. This usually requires large size, and high profile if conventional EBG structures are used. To further assess the proposed EBG cell and its effect on suppressing the coupling between antenna arrays, two CPW circular monopole antennas are designed and investigated with the presence of EBG unit cells. The simulation results show that the EBG unit cells are able to reduce the coupling in an array system that encloses an average human head model by 7 dB over the operational frequency range.
机译:提出了一种紧凑,低轮廓和宽带电磁带隙(EBG)单元电池,用于电磁医学成像天线之间的相互耦合降低。 EBG单元电池设计在3mm厚的聚合物RTV6166基板上,并且由具有四个对称的L槽的方形贴片(14×14mm〜2)组成。 EBG单元电池的特征在于使用悬挂传输线方法。它实现了101.3%的分数阻带带宽,其占地1.18GHz至2.7 GHz的低微波频带。如果使用传统的EBG结构,这通常需要大尺寸和高型材。为了进一步评估所提出的EBG小区及其对抑制天线阵列之间的耦合的影响,通过存在EBG单元细胞的存在设计和研究了两个CPW圆形单极天线。仿真结果表明,EBG单元电池能够减少阵列系统中的耦合,该阵列系统在操作频率范围内将平均人体头部模型包围7 dB。

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