Non-foster circuit matching of a near-field resonant parasitic, electrically small antenna

J. Roberts, R. Ziolkowski
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引用次数: 3

Abstract

The impedance bandwidth of a near-field resonant parasitic (NFRP) element of an electrically small, metamaterial-inspired Egyptian Axe Dipole (EAD) antenna, can be altered significantly by embedding a non-Foster circuit element into it. The frequency agile behavior of the reactance component internal to the NFRP element of an EAD antenna with a center frequency of 300 MHz is established and a negative impedance converter (NIC) circuit is designed to mimic this behavior. Several other non-Foster circuits have been considered for the NIC implementation and will be discussed in our presentation. A Linvill-based design of the requisite NIC, which contains 4 bipolar junction transistors (BJTs), is presented here. ANSYS HFSS was used for the antenna simulation results; Agilent ADS was used for the circuit simulations. The co-designed, optimized results show an increase in the EAD fractional impedance bandwidth from 0.9% to 46.0%, a factor of over 50 times improvement.
近场谐振寄生电小天线的非培养电路匹配
一个电小的、超材料启发的埃及斧偶极子(EAD)天线的近场谐振寄生(NFRP)元件的阻抗带宽可以通过嵌入非福斯特电路元件而显著改变。建立了中心频率为300 MHz的EAD天线NFRP元件内部电抗元件的频率捷变特性,并设计了一种模拟该特性的负阻抗变换器(NIC)电路。其他几种非福斯特电路已被考虑用于NIC实现,并将在我们的报告中讨论。本文提出了一种基于linville的必要NIC设计,其中包含4个双极结晶体管(bjt)。采用ANSYS HFSS对天线进行仿真;采用Agilent ADS进行电路仿真。共同设计的优化结果表明,EAD分数阻抗带宽从0.9%增加到46.0%,提高了50倍以上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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