AN ANTENNA BASED ON A HYBRID METAL–DIELECTRIC STRUCTURE

Q4 Physics and Astronomy Radio Physics and Radio Astronomy Pub Date : 2021-09-14 DOI:10.15407/rpra26.03.270
D. Mayboroda, S. O. Pogarsky
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Abstract

Purpose: Nowadays, in the millimeter frequency range, the dielectric waveguides of various modifications have certain advantages over the standard metal waveguides, primarily due to the possibility of creating functional units based on them. This is due to the relative simplicity and low cost of manufacturing the dielectric waveguides and functional units using them, the high degree of their integration with active elements, the use in their manufacture of different dielectrics and polymers with a wide range of material constants and a variety of mechanical properties (in particular, some materials have a significant flexibility). After making a series of physical experiments we have found the possibility of implementing the frequency selection and radiation into free space of electromagnetic waves by a hybrid metal-dielectric structure. Design/methodology/approach: The studied electrodynamic structure belongs to the class of hybrid metal-dielectric structures. It includes a modified inverted dielectric waveguide with a periodic sequence on the dielectric plate of fifteen dielectric rods with metallized coating on one of the faces placed outwards. The structure efficiency was estimated by the voltage standing-wave ratio (VSWR) values and power attenuation in the duct. The measurements were made with the reflectometer method. To estimate the degree of electromagnetic field concentration near the rod inhomogeneities in the near zone, the mobile probe method was used. The field structures were visualized with the method of isolines. Findings: The results of a series of experimental investigations showed the possibility of matching the structure with the external waveguides in the frequency range of 26.5-32.5 GHz with the voltage standing-wave ratio (VSWR) less than 1.8. The frequency dependence of attenuation is oscillatory with clearly expressed frequency ranges with small and large attenuation values. Moreover, the dependence is almost periodic, which is typical of periodic structures. The frequency response slope in the transition zones can be quite high and reach values of 41.26 dB/GHz. The degree of concentration of the electric field near the waveguide dielectric rod and the degree of excitation of the dielectric inhomogeneities was found by directly measured electric field strength in the near zone. Measurements of energy characteristics made under the short-circuit conditions for the main guide and in the mode of matched load of the main guide showed both the ability to control the polarization characteristics and the ability to change the appearance of the pattern and its orientation in space. Conclusions: It has been experimentally proven that a hybrid metal-dielectric structure, being a modified inverted dielectric waveguide with a periodic sequence on the dielectric plate of fifteen dielectric rods with metalized coating on one of the faces placed outwards, can be effectively integrated into a standard transmission line. It is found that this structure can be matched with the external circuits in a fairly wide frequency range. It is also found that in different frequency ranges this hybrid metal-dielectric structure shows the possibility of both efficient frequency selection and radiation in free space. Antenna measurements have shown the beam pattern shape controllability. Key words: inverted dielectric waveguide, periodic sequence, voltage standing-wave ratio (VSWR), attenuation, reflectometer method, mobile probe method, directivity pattern
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一种基于金属-电介质混合结构的天线
目的:如今,在毫米频率范围内,各种修改的介质波导比标准金属波导具有一定的优势,主要是因为可以基于它们创建功能单元。这是由于制造电介质波导和使用它们的功能单元的相对简单和低成本,它们与有源元件的高度集成,在它们的制造中使用具有广泛材料常数和各种机械性能的不同电介质和聚合物(特别是,一些材料具有显著的灵活性)。在进行了一系列物理实验后,我们发现了通过混合金属-电介质结构实现电磁波频率选择和辐射到自由空间的可能性。设计/方法/方法:所研究的电动结构属于混合金属-电介质结构。它包括一个改进的倒置介电波导,在十五个介电棒的介电板上具有周期性序列,其中一个面上有金属化涂层。通过电压驻波比(VSWR)值和管道中的功率衰减来估计结构效率。采用反射计法进行测量。为了估计近区棒不均匀性附近的电磁场集中程度,使用了移动探针法。用等值线法对场结构进行了可视化。研究结果:一系列实验研究的结果表明,在26.5-32.5 GHz的频率范围内,电压驻波比(VSWR)小于1.8,可以将该结构与外部波导匹配。衰减的频率依赖性是振荡的,具有小衰减值和大衰减值的明确表示的频率范围。此外,这种依赖性几乎是周期性的,这是周期性结构的典型特征。过渡区中的频率响应斜率可以相当高,并且达到41.26dB/GHz的值。波导介质棒附近电场的集中程度和介质不均匀性的激发程度是通过直接测量近区的电场强度来发现的。在主导轨短路条件下和主导轨匹配负载模式下进行的能量特性测量表明,既有控制极化特性的能力,也有改变图案外观及其在空间中方向的能力。结论:实验证明,混合金属-电介质结构是一种改进的倒置电介质波导,在15个电介质棒的电介质板上具有周期性序列,其中一个表面向外放置有金属化涂层,可以有效地集成到标准传输线中。研究发现,这种结构可以在相当宽的频率范围内与外部电路相匹配。还发现,在不同的频率范围内,这种混合金属-电介质结构显示了在自由空间中进行有效频率选择和辐射的可能性。天线测量表明波束方向图形状可控。关键词:反向介质波导,周期序列,电压驻波比(VSWR),衰减,反射计法,移动探针法,方向图
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来源期刊
Radio Physics and Radio Astronomy
Radio Physics and Radio Astronomy Physics and Astronomy-Physics and Astronomy (miscellaneous)
CiteScore
0.60
自引率
0.00%
发文量
18
审稿时长
8 weeks
期刊最新文献
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