对槽型天线输入阻抗和效率进行了研究

A. P. Popov, Y. Antar
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引用次数: 0

摘要

本文提出的计算公式可以快速、合理、准确地估计出印刷缝隙天线的效率和驱动点阻抗。它们可以在天线设计的初始阶段用于选择基板参数和槽长度的最佳值。印刷缝隙天线的内部特性是将大部分输入功率辐射到介电常数较高的介质中,这导致其效率较低,因为衬底的介电常数通常比大气的介电常数高得多。然而,同样的特性使得印刷槽天线成为DRA的一个非常有吸引力的馈线,因为DRA的介电常数可以选择比衬底高得多。将所提出的公式推广到一些实际的天线结构,例如驱动半球形介质谐振器的槽天线或有限宽度介质衬底上的槽天线。关于这些结构的一些初步结果将在报告中报告。由于电流分布M (y) = (L/2−|y|) × cos[k × (L/2−|y|)]也允许天线阻抗的封闭形式表达式,因此可以提高方法的精度。该函数与(1)可用于非常有效地实现用于印刷天线阻抗和效率计算的MoM。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On slot antennas input impedance and efficiency
The formulas presented in the paper allow fast and reasonably accurate estimation of printed slot antennas efficiency and driving point impedance. They can be used at the initial stage of the antenna design to choose optimal values for the substrate parameters and slot length. The internal feature of printed slot antennas that is to radiate the most of the input power into a media with a higher dielectric constant, results in their low efficiency, since the dielectric constant of the substrate is usually much higher then that of the atmosphere. The same feature, however, makes the printed slot antennas a very attractive feeder for the DRA, since the dielectric permittivity of the DRA can be chosen much higher then that of the substrate. The generalization of the presented formulas for some practical antenna structures of interest, such as slot antenna driving a hemispherical dielectric resonator or slot antenna on a finite width dielectric substrate is straightforward. Some preliminarily results on these structures are to be reported during the presentation. The accuracy of the method can be increased since the current distribution M (y) = (L/2 − |y|) × cos[k × (L/2 − |y|)] also allows the closed form expression for the antenna impedance. This function together with (1) can be used for very efficient implementation of the MoM for the printed antenna impedance and efficiency calculations.
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