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Self-resonant structures of normal-mode helical antennas embedded in dielectric and magnetic materials

机译:嵌入电介质和磁性材料的标准模式螺旋天线的自谐振结构

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Normal-mode helical antennas (NMHA) are well known for achieving high antenna efficiencies in very small sizes when antenna structures are tuned to self-resonant situations. The design equation determining self-resonant structures were developed in free space conditions. However, in practically, NMHA mostly used dielectric or magnetic materials as cores. The design equation for these cases is not studied yet. In this paper, fundamental self-resonant structures are studied for NMHA placed in dielectric or magnetic material. In order to obtain correct calculation results, calculation models of an commercial electromagnetic simulator (FEKO) is studied. Many data for structural change from free space condition to inside materials are achieved. Moreover, input resistance and antenna efficiency changes are also obtained.
机译:当天线结构调整到自谐振情况时,普通模式螺旋天线(NMHA)以非常小的尺寸实现高天线效率是众所周知的。在自由空间条件下开发了确定自谐振结构的设计方程。但是,实际上,NMHA主要使用介电或磁性材料作为芯。这些情况的设计方程式尚未研究。本文研究了放置在介电或磁性材料中的NMHA的基本自谐振结构。为了获得正确的计算结果,研究了商用电磁模拟器(FEKO)的计算模型。从自由空间状态到内部材料的结构变化的许多数据已获得。此外,还可以获得输入电阻和天线效率的变化。

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