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Electrically Small, Broadside Radiating Huygens Source Antenna Augmented With Internal Non-Foster Elements to Increase Its Bandwidth

机译:小型电子,宽边辐射的惠更斯源天线,内部非福斯特元件增强了天线的带宽

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摘要

A broadside radiating, linearly polarized, electrically small Huygens source antenna system that has a large impedance bandwidth is reported. The bandwidth performance is facilitated by embedding non-Foster components into the near-field resonant parasitic elements of this metamaterial-inspired antenna. High-quality and stable radiation performance characteristics are achieved over the entire operational bandwidth. When the ideal non-Foster components are introduced, the simulated impedance bandwidth witnesses approximately a 17-fold enhancement over the passive case. Within this -10-dB bandwidth, its maximum realized gain, radiation efficiency, and front-to-back ratio (FTBR) are, respectively, 4.00 dB, 88%, and 26.95 dB. When the anticipated actual negative impedance convertor circuits are incorporated, the impedance bandwidth still sustains more than a 10-fold enhancement. The peak realized gain, radiation efficiency, and FTBR values are, respectively, 3.74 dB, 80%, and 28.01 dB, which are very comparable to the ideal values.
机译:据报道,具有宽阻抗带宽的宽边辐射,线性极化,电小惠更斯源天线系统。通过将非Foster组件嵌入此超材料激发天线的近场共振寄生元件中,可以提高带宽性能。在整个工作带宽上都能获得高质量和稳定的辐射性能特征。当引入理想的非福斯特分量时,仿真的阻抗带宽比无源情况提高了约17倍。在-10-dB带宽内,其最大实现增益,辐射效率和前后比(FTBR)分别为4.00 dB,88%和26.95 dB。当合并了预期的实际负阻抗转换器电路时,阻抗带宽仍然保持超过10倍的增强。峰值实现增益,辐射效率和FTBR值分别为3.74 dB,80%和28.01 dB,与理想值非常相似。

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