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Non-foster impedance matching sensitivity of electrically small electric and magnetic spherical dipole antennas

机译:小型电磁电磁球形天线的非福斯特阻抗匹配灵敏度

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摘要

The impedance bandwidth (BW) improvement property of a self-resonant folded spherical helix electric dipole and a spherical split ring (SSR) magnetic dipole is compared when a negative reactance element is loaded on the parasitic resonator of the antennas. They have the same electrical size of ka = 0.38 and both approach each lower Q-bound. It is found that the impedance characteristic reacts more sensitively to the loaded element for the SSR antenna due to the inherent two-times higher Q of the magnetic antenna. It is also found that a conventional non-Foster circuit composed of a series negative inductor and a capacitor cannot be used for wide impedance matching of the SSR antenna due to the high sensitivity. Subsequently, a circuit topology that enables more precise matching of the reactive values for widened impedance matching in the high-Q SSR antenna and satisfies the stable operating condition is proposed. It is observed that the improvement ratio of the BW is limited in practical situation. Nevertheless, the measured reflection coefficient of the 3D-printed SSR antenna loaded with the designed active matching circuit shows two-times wider impedance BW than passive matching, verifying the simulated result from the circuit and electromagnetic (EM) simulations.
机译:当在天线的寄生谐振器上加载负电抗元件时,比较了自谐振折叠球形螺旋电偶极子和球形裂环(SSR)磁偶极子的阻抗带宽(BW)改善特性。它们具有相同的电气尺寸ka = 0.38,并且都接近每个较低的Q界。已经发现,由于磁性天线固有的两倍高的Q,阻抗特性对SSR天线的负载元件反应更为灵敏。还发现,由串联负电感器和电容器组成的常规非福斯特电路由于高灵敏度而不能用于SSR天线的宽阻抗匹配。随后,提出了一种电路拓扑,该拓扑可以在高Q SSR天线中实现更精确的电抗值匹配以扩展阻抗匹配,并满足稳定的工作条件。可以看出,在实际情况中,BW的改善率是有限的。尽管如此,装载有设计的有源匹配电路的3D打印SSR天线的测量反射系数显示出的阻抗带宽是无源匹配的两倍,验证了电路和电磁(EM)仿真的仿真结果。

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