首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Compact Unidirectional Conformal Antenna Based on Flexible High-Permittivity Custom-Made Substrate for Wearable Wideband Electromagnetic Head Imaging System
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Compact Unidirectional Conformal Antenna Based on Flexible High-Permittivity Custom-Made Substrate for Wearable Wideband Electromagnetic Head Imaging System

机译:基于柔性高介质定制基板的紧凑型单向保形天线,用于可穿戴宽带电磁头成像系统

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摘要

An approach toward designing and building of a compact, low-profile, wideband, unidirectional, and conformal imaging antenna for electromagnetic (EM) head imaging systems is presented. The approach includes the realization of a custom-made flexible high-permittivity dielectric substrate to achieve a compact sensing antenna. The developed composite substrate is built using silicon-based poly-di-methyl-siloxane (PDMS) matrix and microscale of aluminium oxide (Al2O3) and graphite (G) powders. Al2O3 and G powders are used as fillers with different weight-ratio to manipulate and control the dielectric properties of the substrate for attaining better matched with the human head and reducing antenna's physical size while keeping the PDMS flexibility feature. Using the custom-made substrate, a compact, wideband, and unidirectional on-body matched antenna for wearable EM head imaging system is realized. The antenna is configured as a multi-slot planar structure with four shorting pins, working as electric and magnetic dipoles at different frequency bands. The measured reflection coefficient (S11) shows an operating frequency band of 1-4.3 GHz. The time-average power density and the amplitude of the received signal inside the MRI-based realistic head phantom demonstrate a unidirectional propagation and high-fidelity factor (FF) of more than 90. An array of 13 antennas are fabricated and tested on a realistic 3-D head phantom to verify the imaging capability of the proposed antenna. The reconstructed images of different targets inside the head phantom demonstrate the possibility of utilizing the conformal antenna arrays to detect and locate abnormality inside the brain using multistatic delay-multiply-and-sum beamforming algorithm.
机译:提出了一种设计和构建用于电磁(EM)头部成像系统的紧凑,低调,宽带,单向和共形成像天线的方法。该方法包括实现定制的柔性高介电常数介电基板,以实现紧凑的感测天线。开发的复合衬底采用硅基多甲基 - 硅氧烷(PDMS)基质和微碳氧化铝(Al 2 O 3)和石墨(G)粉末制备。 Al2O3和G孔用作具有不同权重率的填料,以操纵和控制基板的介电性质,以便与人头部更好地匹配并降低天线的物理尺寸,同时保持PDMS柔韧性特征。实现了用于可穿戴EM头部成像系统的紧凑型基板,紧凑,宽带和单向体匹配天线。天线被配置为具有四个短路销的多槽平面结构,在不同频带处用作电和磁性偶极子。测量的反射系数(S11)示出了1-4.3GHz的工作频带。基于MRI的现实头部模型内的接收信号的时间平均功率密度和幅度证明了一个单向传播和高保真因子(FF)超过90. 13个天线阵列在逼真上制造和测试3-D头幻像验证所提出的天线的成像能力。头部幻像内部的不同目标的重建图像展示利用共形天线阵列使用多陀延迟 - 乘法波束形成算法来检测和定位大脑内异常的可能性。

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