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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >A Ka-band pattern-reconfigurable microstrip antenna enabled by PIN diodes with accurate extraction of equivalent circuit parameters
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A Ka-band pattern-reconfigurable microstrip antenna enabled by PIN diodes with accurate extraction of equivalent circuit parameters

机译:PIN二极管启用了KA波段模式可重新配置的微带天线,具有精确提取等效电路参数

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摘要

A Ka-band microstrip antenna based on PIN diodes with accurate extraction of equivalent circuit parameters for pattern reconfigurability is proposed in this work. With the increase in operation frequency, the parasitic effect introduced by PIN diodes has tremendous influence on the performance of reconfigurable antennas; hence, the conventional equivalent circuit parameters of the PIN diodes are not applicable for higher-frequency applications, such as millimeter-wave circuits and antennas. Therefore, accurate equivalent circuit models of the conventional PIN diodes are essential in the millimeter-wave reconfigurable antenna design. Based on the combination of simulation and experimental results, accurate equivalent circuit model parameters for the millimeter-wave range of the PIN diode are extracted, with a pattern-reconfigurable antenna being developed afterwards. The proposed antenna consists of two PIN diodes, two interdigital capacitors, an L-shaped slot, and their bias networks. Particularly, the interdigital capacitors are utilized to isolate direct current (DC) from radio frequency circuits, which is able to improve the economic efficiency of the antenna notably as compared with conventional chip capacitors in the Ka-band. By combining a suitable arrangement of the diodes' location and the DC bias networks, the main beam direction of the proposed antenna can be switched between -60 degrees and 60 degrees. To demonstrate the proposed idea, a prototype antenna is fabricated and measured. The measured results agree with the simulation quite well, with a good performance around 30 GHz and a gain greater than 5 dBi for both modes being achieved.
机译:本文提出了一种基于PIN二极管的Ka波段微带天线,该天线可以精确提取等效电路参数,实现方向图重构。随着工作频率的增加,PIN二极管引入的寄生效应对可重构天线的性能有很大影响;因此,PIN二极管的常规等效电路参数不适用于更高频率的应用,例如毫米波电路和天线。因此,精确的传统PIN二极管等效电路模型在毫米波可重构天线设计中至关重要。结合仿真和实验结果,提取了PIN二极管毫米波范围内的精确等效电路模型参数,并开发了一种方向图可重构天线。该天线由两个PIN二极管、两个叉指电容器、一个L形槽及其偏置网络组成。特别是,叉指电容器用于将直流电(DC)与射频电路隔离,与Ka频段的传统片式电容器相比,能够显著提高天线的经济效率。通过结合二极管位置和直流偏置网络的适当布置,所提出天线的主波束方向可以在-60度和60度之间切换。为了验证所提出的想法,制作并测量了一个原型天线。测量结果与仿真结果非常吻合,在30GHz左右具有良好的性能,两种模式的增益均大于5dBi。

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