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Telecommunications and Radio Engineering

年間 12 号発行

ISSN 印刷: 0040-2508

ISSN オンライン: 1943-6009

SJR: 0.185 SNIP: 0.268 CiteScore™:: 1.5 H-Index: 22

Indexed in

MICROWAVE IRREGULAR RESONANT STRUCTURES

巻 78, 発行 5, 2019, pp. 385-392
DOI: 10.1615/TelecomRadEng.v78.i5.20
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要約

The possibilities and conditions for creating high-quality microwave resonance devices based on irregular and hybrid bulk and planar structures are considered. Theoretical model and practical experimental studies are conducted. Possible directions for practical use of such structures for local microwave diagnostics and improvement of microwave lighting lamps are proposed.

参考
  1. Doroshenko, V.A., Ievleva, S.N., Klimova, N.P., Nechiporenko, A.S., and Strelnitsky, A.A., (2016) , Solution to the model problem of excitation of loaded conic slot antenna by method of singular integral equations, Telecommunications and Radio Engineering, 75(20), pp. 1799-1812.

  2. Bondarenko, I.N., Galich, A.V., Slipchenko, N.I., and Troitski, S.I., (2012), Cone-shaped resonator the high-order mode oscillation transducers, 22<sup>nd</sup> International Crimean Conference Microwave and Telecommunication Technology, (CriMiCo 2012), рр. 565-567.

  3. Bondarenko, I.N., Galich, A.V., and Troitski, S.I., (2013), High-Q modes in irregular hybrid structures, Telecommunications and Radio Engineering, 72(19), pp. 1747-1753.

  4. Bondarenko, I.N. and Galich, A.V., (2013), Electrodeless lamps based on the resonant irregular microwave structures, 23<sup>rd</sup> International Crimean Conference Microwave and Telecommunication Technology (CriMiCo 2013), pp. 1063-1064.

  5. Bondarenko, I. and Galich, A., (2016), Resonant irregular hybrid structures, Modern Problems of Radio Engineering, Telecommunications and Computer Science, Proceedings of the 13th International Conference on TCSET, pp. 183-185. DOI: 10.1109/TCSET.2016.7452007

  6. Chen, L.F., Ong, C.K., Neo, C.P. et al., (2004) , Microwave Electronics. Measurements and Materials Characterization, John Wiley & Sons, Ltd., 537p.

  7. Anlage, S.M., Talanov, V.V., and Schwartz, A.R., (2007) , Principles of near-field microwave microscopy, in: Scanning Probe Microscopy: Electrical and Electromechanical Phenomena at the Nanoscale, New York: Springer-Verlag, 1, pp. 215-253.

  8. Didenko, А.N., (2003) , UHF- Energy: The Theory and Practice, Мoscow, Russia: Nauka, 446 p., (in Russian).

  9. Bondarenko, I.N. and Galich, A.V., (2014) , Microstrip resonant sensors, Proc. of 24<sup>th</sup> International Crimean Conference Microwave & Telecommunication Technology (CriMiCo'2014), pp. 984-985.

  10. Bondarenko, I.N. and Galich, A.V., (2015) , Measuring resonant transducers on the basis of microstrip structures, Telecommunications and Radio Engineering, 74(9), pp. 807-814.

によって引用された
  1. Gritsunov Alexander, Bondarenko Igor, Pashchenko Alexey, Bendeberya Gennady, The Statistics of Fermion Natural Oscillatory Systems in Nanoelectronic Technology, 2019 IEEE 2nd Ukraine Conference on Electrical and Computer Engineering (UKRCON), 2019. Crossref

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