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Journal Radioengineering №5 for 2019 г.
Article in number:
A dual-band shared-aperture antenna system based on single resonance artificial magnetic conductor
Type of article: scientific article
DOI: 10.18127/j00338486-201905(I)-10
UDC: 621.396
Authors:

V.S. Verba – Corresponding Member of RAS, Honored Scientist of RF, Dr.Sc.(Eng.), Professor, 

General Product Engineer - First Deputy General Director of JSC «Corporation «Vega» (Moscow)

E-mail: mail@vega.su, vvs.msk@gmail.com

A.P. Volkov – Ph.D.(Eng.), JSC «Corporation «Vega» (Moscow)

E-mail: alexander.p.volkov@gmail.com

V.V. Kakshin – Employee, JSC «Corporation «Vega» (Moscow)

I.Yu. Ryzhov – Employee, JSC «Corporation «Vega» (Moscow)

K.V. Kozlov – Employee, JSC «Corporation «Vega» (Moscow)

A.P. Kurochkin – Dr.Sc.(Eng.), Professor, JSC «Corporation «Vega» (Moscow)

Abstract:

The possibility of creation of the combined dual-band antenna systems on the basis of the one-resonant artificial magnetic conductor is investigated. Technical solution of the system combined by the dual band antenna with the relation of operating frequencies of fhf/flf antennas = 3, kompleksirovanny with the artificial magnetic conductor is developed. The characteristics of approval, an outcome and orientation of the developed combined antenna system calculated by means of electrodynamic modeling are given. Summary: The possibility of creation of the combined dual-band antenna systems on the basis of the one-resonant artificial magnetic conductor is investigated. Technical solution of the system combined by the dual band antenna with the relation of operating frequencies of fhf/flf antennas = 3, kompleksirovanny with the artificial magnetic conductor is developed. The characteristics of approval, an outcome and orientation of the developed combined antenna system calculated by means of electrodynamic modeling are given.

Pages: 101-107
References
  1. Radiolokatsionnye sistemy zemleobzora kosmicheskogo bazirovaniya. Pod red. V.S. Verby. M.: Radiotekhnika. 2010. S. 680.
  2. Problemy antennoi tekhniki. Pod red. L.D. Bakhrakha i D.I. Voskresenskogo. M.: Radio i svyaz. 1989. S. 368.
  3. Ponomarev L.I., Stepanenko V.I. Skaniruyushchie mnogochastotnye antennye reshetki. Pod red. L.I. Ponomareva. M.: Radiotekhnika. 2009. 328 s.
  4. Pokuls R., Uher J., Pozar D.M. Dual-Frequency and Dual-Polarization Microstrip Antennas for SAR Applications. IEEE Trans. Antennas Propag. 1998. V. 46. № 9. P. 1289−1296.
  5. Engheta N., Ziolkowski R.W. Metamaterials: physics and engineering exploration. John Wiley & Sons. 2006. P. 440.
  6. Sievenpiper D.F., Zhang L., Broas R.F.J., et al. High–impedance electromagnetic surfaces with a forbidden frequency band. IEEE Trans. on microwave theory and techniques. 1999. V. 57. № 11. P. 2059−2074.
  7. Volkov A.P., Kozlov K.V., Kurochkin A.P., Grinev A.Yu. Enhanced Directivity of Low-Profile Wideband Antenna Based on Artificial Magnetic Conductor. IEEE Conference Publications: Radiation and Scattering of Elec-tromagnetic Waves (RSEMW). 2017. P. 2179−2184.
  8. B. Li, Y.-Z. Hu, W. Hu, et al. Wideband Dual-Polarized Patch Antenna With Low Cross Polarization and High Isolation. IEEE Antennas and Wireless Propag. Letters. 2012. V. 11. P. 427−430.
Date of receipt: 20 марта 2019 г.