Multiple-unit antennas on paraboloidal lattices of dielectric resonators

Authors

DOI:

https://doi.org/10.20535/RADAP.2015.60.59-68

Keywords:

dielectric resonator, lattice, antenna, directional pattern, S-matrix, electromagnetic fields

Abstract

Introduction. Today a multiple-unit antenna properties, containing big number DRs are studied inefficiently. At present article a possibility of the antennas building produced on paraboloidal lattices consisting DRs of the cylindrical form with lowest magnetic type resonances is considered.
The results. Calculation results of the antenna parameters on dielectric resonator paraboloidal lattices are presented. The space distribution of the radiation field patterns in the near and wave zones is considered. Reflection coefficient frequency dependence of the antennas is calculated. Possibility narrowing of the directional pattern is showed. Signals frequency selection performing as well as increased electromagnetic compatibility of the suggested structures is noticed.
Conclusion. Adduced calculations indicate capability of the practical application lattices on DRs as well as building on their base a wide class of the frequency selective antennas in millimeter and sub millimeter wavelength ranges. Such antennas will have enhanced electromagnetic compatibility.

Author Biography

A. A. Trubin, National Technical University of Ukraine, Kyiv Politechnic Institute, Kiev

Trubin Alexander A., Doc. Sci., Prof. of Educational Scientific Institute of Telecommunication Systems

References

Перечень источников

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References

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Luk K. M. eds. and Leung K. W. eds. (2003) Dielectric Resonator Antennas. – Research Studies Press Ltd. – 388 p.

Cheype C., Serier C., Thevenot M., Monediere T., Reineix A. and Jecko B. (2002) An Electromagnetic Bandgap Resonator Antenna. IEEE Trans. on Antennas and Propagation, Vol. 50, №9. – pp. 1285 – 1290.

Zhang Y., Kishk A.A., Yakovlev A.B. and Glisson A.W. (2006) Analysis and Design of Wideband Dielectric Resonator Antenna Arrays for Waveguide-Based Spatial Power Combining. 2006 European Microwave Conference, pp. 642 – 645.

Ueda T., Lai A., Michishita N. and Itoh T. (2006) Leaky Wave Radiation from Left-Handed Transmission Lines Composed of a Cut-off Parallel-Plate Waveguide Loaded with Dielectric Resonators. Proceedings of Asia-Pacific Microwave Conference, pp. 1075 – 1079.

Kim J. and Gopinath A. (2007) Application of Cubic High Dielectric Resonator Metamaterial to Antennas. 2007 IEEE Antennas and Propagation International Symposium, pp. 2349 – 2352.

Ueda T., Michishita N., Akiyama M. and Itoh T. (2008) Dielectric-Resonator-Based Composite Right/Left-Handed Transmission Lines and Their Application to Leaky Wave Antenna. IEEE Transactions on Microwave Theory and Techniques, v. 56, No10, pp. 2259 – 2269.

Sakuma T., Noguchi K., Mizusawa M., Betsudan S. and Katagi T. (2005) Measurement of a Cylindrical Dielectric Resonator Antenna in Millimeter Wave Bands. 2005 IEEE Antennas and Propagation Society International Symposium, vol. 3A, pp. 404 – 407.

Li J., Salandrino J. and Engheta N. (2009) Optical spectrometer at the nanoscale using optical Yagi-Uda nanoantennas. Physical review B, Vol. 79, No 19, pp. 1-5.

Trubin, A. A. (2011) Electromagnetic waves scattering by parabolic lattices of dielectric resonators. Visn. NTUU KPI, Ser. Radioteh. radioaparatobuduv., no. 47, pp. 106-110. (in Russian)

Trubin, A. A., Shmyglyuk, G. S. (2006) The modeling of the antenna lattce parameters on cylindrical dielectric resonators. Visn. NTUU KPI, Ser. Radioteh. radioaparatobuduv., no. 33, pp. 101-108. (in Ukrainian)

Trubin A.A. (1984) Issledovanie kharakteristik izlucheniya diskovogo dielektricheskogo rezonatora [Study of Disc Dielectric Resonator radiation characteristic]. Vestnik Kiev. Politekhn. Instituta, Radiotekhnika, No. 21, pp. 29-33.

Published

2015-03-30

How to Cite

Трубин, А. (2015) “Multiple-unit antennas on paraboloidal lattices of dielectric resonators”, Visnyk NTUU KPI Seriia - Radiotekhnika Radioaparatobuduvannia, 0(60), pp. 59-68. doi: 10.20535/RADAP.2015.60.59-68.

Issue

Section

Electrodynamics. Microwave devices. Antennas