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首页> 外文期刊>IEEE Antennas and Wireless Propagation Letters >Deterministic Equation of Self-Resonant Structures for Normal-Mode Helical Antennas Implanted in a Human Body
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Deterministic Equation of Self-Resonant Structures for Normal-Mode Helical Antennas Implanted in a Human Body

机译:植入人体的普通模式螺旋天线的自谐振结构的确定方程

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摘要

Recently, helical antennas had been used as a very small implantable antenna in a capsule endoscopy system. For a helical antenna, a normal-mode helical antenna (NMHA) is promising because of its small size and the completeness of an antenna design method, which has already been established. However, in the human body, the effects of human tissues on the electrical characteristics of an NMHA were not clarified. The most important aspect is to determine the self-resonant structures. In this letter, a deterministic equation is derived for the self-resonant structures of an NMHA in the human body. By utilizing simulation results of an electromagnetic simulator, a capacitive reactance equation is deduced based on the electric field distributions around an antenna. An inductive reactance equation is obtained by modifying the equation of free space to the condition of inside a dielectric material. Finally, by equating the capacitive and inductive reactance equations, the self-resonant equation is determined. The accuracy of the equation is ensured through the agreements of the antenna structures given by equations and electromagnetic simulations. Moreover, by fabricating an NMHA and a human body phantom, the measured results are obtained. The self-resonant structure is ensured through the measured results.
机译:近来,螺旋形天线已被用作胶囊内窥镜系统中的非常小的可植入天线。对于螺旋天线,由于其小尺寸和已经建立的天线设计方法的完备性,普通模式螺旋天线(NMHA)是有前途的。但是,在人体中,人体组织对NMHA的电特性的影响尚不清楚。最重要的方面是确定自谐振结构。在这封信中,得出了人体中NMHA的自谐振结构的确定性方程式。通过利用电磁仿真器的仿真结果,基于天线周围的电场分布推导电容电抗方程。通过将自由空间方程修改为介电材料内部的条件,可以得到电感电抗方程。最后,通过使电容和电感抗方程相等,可以确定自谐振方程。通过方程式和电磁仿真给出的天线结构的一致性,可以确保方程式的准确性。此外,通过制造NMHA和人体模型,获得了测量结果。通过测量结果可以确保自谐振结构。

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