Preview

Journal of the Russian Universities. Radioelectronics

Advanced search

Electrically tunable structure with periodic change of wave impedance to deflection of the main beam highly directional emitter in millimeter

Abstract

A new design of electrically tunable multilayer structure (deflector) millimeter wavelength range based on the periodic structure of the ferroelectric/linear dielectric is proposed. Numerical simulation results show the parameters of the deflector increase efficiency of the deflection angle of the main beam of the radiation pattern due to the dispersive properties of the structure in comparison with existing analogues.

About the Authors

A. G. Altynnikov
Санкт-Петербургский государственный электротехнический университет "ЛЭТИ" им. В. И. Ульянова (Ленина)
Russian Federation


A. B. Kozyrev
Санкт-Петербургский государственный электротехнический университет "ЛЭТИ" им. В. И. Ульянова (Ленина)
Russian Federation


A. K. Mikhailov
Санкт-Петербургский государственный электротехнический университет "ЛЭТИ" им. В. И. Ульянова (Ленина)
Russian Federation


R. A. Platonov
Санкт-Петербургский государственный электротехнический университет "ЛЭТИ" им. В. И. Ульянова (Ленина)
Russian Federation


A. V. Yastrebov
Saint Petersburg Electrotechnical University "LETI"
Russian Federation


References

1. Millimeter-Wave Beamforming as an Enabling Technology for 5G Cellular Communications: Theoretical Feasibility and Prototype Results / W. Roh, J. Y. Seol, J. Park, B. Lee et al. // IEEE Communications Magazine. 2014. Vol. 52, iss. 2. P. 106-113.

2. Millimeter-Wave Technology for Automotive Radar Sensors in the 77 GHz Frequency Band / J. Hasch, E. Topak, R. Schnabel, T. Zwick et al. // IEEE Trans. on Microw. Theory Tech. 2012. Vol. MTT-60, iss. 3. P. 845-860.

3. Multilayer Antenna-Filter Antenna for Beam-SteeringTransmit-Array Applications / L. Boccia, I. Russo, G. Amendola, G. Massa // IEEE Trans. on Microw. Theory Tech. 2012. Vol. MT-60, iss. 7. P. 2287-2300.

4. Beam Steering Transmitarray Using Tunable Frequency Selective Surface With Integrated Ferroelectric Varactors / M. Sazegar, Y. Zheng, C. Kohler, H. Maune et al. // IEEE Trans. on Antennas Propag. 2012. Vol.AP-60, iss. 12. P. 5690-5699.

5. Пат. US 4323901 A. ICl H01Q19/06. Monolithic, Voltage Controlled, Phased Array / R. E. Wames, W. F. Hall, W. W. Hall, T. C. Lim. Publ. 06.04.1982.

6. Пат. US 5729239 A, ICl H01Q15/00. Voltage Controlled Ferroelectric Lens Phased Array / B. L. Jaganmohan. Publ. 17.03.1998.

7. Пат. US 0237322, ICl H01Q3/44, H01Q15/24. Ferroelectric Lens / V. Cherman, P. Fihol, S. Gevorgian et al. Publ. 24.09.2009.

8. Пат. US 0343009 A1, ICl H05K9/00. Deflecting Device for Electromagnetic Radiation / A. B. Kozyrev, A. G. Chernokalov, V. N. Osadchiy et al. Publ. 26.12.2013.

9. Smolensky G. A. Ferroelectrics and Related Materials. New York: Academic Press, 1981. 763 p.

10. Ferroelectric Materials for Microwave Tunable Applications / A. K. Tagantsev, V. O. Sherman, K. F. Astafiev, J. Venkatesh et al. // J. Electroceramics. 2003. Vol. 11, iss. 1. P. 5-66.

11. Observation Of An Anomalous Correlation Between Permittivity and Tunability of a Doped (Ba, Sr)TiO3(Ba, Sr)TiO3 Ferroelectric Ceramic Developed for Microwave Applications / A. B. Kozyrev, A. D. Kanareykin, E. A. Nenasheva, V. N. Osadchy et al. // Appl. Phys. Lett. 2009. Vol. 95, iss. 1. P. 012908.

12. Minami T. Present Status of Transparent Conducting Oxide Thin-Film Development for Indium-Tin-Oxide (ITO) Substitutes // Thin Solid Films. 2008. Vol. 516, iss 17. P. 5822-5828.

13. Фильтры СВЧ, согласующие цепи и цепи связи: в 2 т. Т. 1 / Г. Л. Матей, Л. Янг, Е. М. Т. Джонс; пер. под ред. Л. В. Алексеева, Ф. В. Кушнира. М.: Связь, 1971. 439 с.


Review

For citations:


Altynnikov A.G., Kozyrev A.B., Mikhailov A.K., Platonov R.A., Yastrebov A.V. Electrically tunable structure with periodic change of wave impedance to deflection of the main beam highly directional emitter in millimeter. Journal of the Russian Universities. Radioelectronics. 2016;(3):67-70. (In Russ.)

Views: 452


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 1993-8985 (Print)
ISSN 2658-4794 (Online)