One-dimensional grating of open rings (frames) with capacitive shunts as a shield (reflector) of a dipole radiator

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详细

A one-dimensional grating is considered, which is a ruler of rectangular single open rings with capacitive shunts at breaks during mixed electromagnetic excitation of the rings. It is shown that such an array at and near a resonant frequency is an effective shield (reflector) for a dipole radiator located next to it. The tuning of the resonant frequency is realized by changing the size of the rings in the direction «along the grating». A method is proposed for expanding, up to two or more times, the frequency bands of shielding and matching the dipole with the supply line using additional capacitance between adjacent lattice rings.

作者简介

Y. Kazantsev

Fryazino Branch Kotelnikov Institute of Radio Engineering and Electronics RAS; Institute of Theoretical and Applied Electrodynamics RAS

编辑信件的主要联系方式.
Email: gaarkr139@mail.ru
Vvedenskogo Squar., 1, Fryazino, Moscow region, 141190 Russian Federation; Izhorskaya Str., 13, Moscow, 125412 Russian Federation

G. Kraftmakher

Fryazino Branch Kotelnikov Institute of Radio Engineering and Electronics RAS

Email: gaarkr139@mail.ru
Vvedenskogo Squar., 1, Fryazino, Moscow region, 141190 Russian Federation

V. Mal'tsev

Fryazino Branch Kotelnikov Institute of Radio Engineering and Electronics RAS

Email: gaarkr139@mail.ru
Vvedenskogo Squar., 1, Fryazino, Moscow region, 141190 Russian Federation

V. Solosin

Fryazino Branch Kotelnikov Institute of Radio Engineering and Electronics RAS; Institute of Theoretical and Applied Electrodynamics RAS

Email: gaarkr139@mail.ru
Vvedenskogo Squar., 1, Fryazino, Moscow region, 141190 Russian Federation; Izhorskaya Str., 13, Moscow, 125412 Russian Federation

参考

  1. Sievenpiper D., Zhang L., Broas R.F.J. et al. // IEEE Trans. 1999. V. MTT-47. № 11. P. 2059.
  2. Broas R.F.J., Sievenpiper D.F., Yablonovitch E. // IEEE Trans. 2001. V. MTT-49. № 7. P. 1262.
  3. Broas R.F.J., Sievenpiper D.F., Yablonovitch E. // IEEE Trans. 2005. V. AP-53. № 4. P. 1377.
  4. Clavijo S., Diaz R.E., McKinzie W.E. // IEEE Trans. 2003. V. AP-51. № 10. Pt.1. P. 2678.
  5. Yang F., Rahmat-Samii Y. // IEEE Trans. 2003. V. AP-51. P. 2691.
  6. Simovski C.R., de Maagt P., Tretyakov S.A. et al. // Electron. Lett. 2004. V. 40. № 2. P. 92.
  7. Chang Q.C., Qian Y., Itoh T. // Progress in Electromagnetics Research. 2003. V. 41. P. 211.
  8. Дьяконова О.А., Казанцев Ю.Н. // Журн. радиоэлектрон. 2018. № 8. http://jre.cplire.ru/jre/aug18/10/text.pdf
  9. Coccioli R., Yang F.-R., Ma K.-P., Itoh T. // IEEE Trans. 1999. V. MTT-47. № 11. P. 2123.
  10. Hiranandani M.A., Yakovlev A.B., Kishk A.A. // IEE Proc.: Microwave, Antennas and Propagation. 2006. V. 153. № 5. P. 487.
  11. Kазанцев Ю.Н., Крафтмахер Г.А., Мальцев В.П. Солосин В.С. // РЭ. 2018. Т. 63. № 8. С. 765.
  12. Aйзенберг Г.З., Янпольский В.Г., Терешин О.Н. Антенны УКВ. Ч. 1. М.: Связь, 1977.
  13. Kazantseva N., Kazantsev Yu., Babayan Y. at al. Thin Wideband Radio Absorber. Czech Republic Patent ĈZ № 305905. Publ. 27.04.2016.

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