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Journal Radioengineering №6 for 2022 г.
Article in number:
Improving the electromagnetic compatibility of a group of radio electronic equipment through the use of metamaterials in the designs of radiating systems
Type of article: scientific article
DOI: https://doi.org/10.18127/j00338486-202206-06
UDC: 621.396.67
Authors:

M.A. Buzova1, Yu.I. Kolchugin2, A.D. Krasilnikov3, A.M. Neshcheret4, A.V. Shlyahov5

1-4 JSC “SIP RS” (Samara, Russia)

5 Volga State University of Telecommunications and Informatics (Samara, Russia)

Abstract:

In order to ensure the electromagnetic compatibility of a group of radio electronic equipment, it is necessary to develop innovative solutions for radiating systems related to the use of composite structures and metamaterials.

In the work, various variants of radiating systems were considered, in which metamaterials were used as reflectors and screens. An electrodynamic analysis of antenna systems was performed using chiral metamaterials. Graphs of the dependences of the transmission (decoupling) coefficients at the studied frequencies are obtained. A comparative analysis of systems with a reflector, metallized and non-metallized screen made of metamaterial has been carried out.

The presented solutions can be used at busy radio centers with a large number of antennas of various types.

Pages: 37-46
For citation

Buzova M.A., Kolchugin Yu.I., Krasilnikov A.D., Neshcheret A.M., Shlyahov A.V. Improving the electromagnetic compatibility of a group of radio electronic equipment through the use of metamaterials in the designs of radiating systems. Radiotekhnika. 2022. V. 86. № 6. P. 37−46. DOI: https://doi.org/10.18127/j00338486-202206-06 (In Russian)

References
  1. Adamczyk B. Foundations of electromagnetic compatibility: with practical applications. Hoboken, NJ: Wiley. 2017. 648 p.
  2. Osnovy upravlenija ispol'zovaniem radiochastotnogo spektra. T. 2. Obespechenie jelektromagnitnoj sovmestimosti radiosistem. Pod red. M.A. Byhovskogo. M.: Krasand. 2011. 552 s. (In Russian).
  3. Kumar P., Ali T., Pai M.M.M. Electromagnetic metamaterials: a new paradigm of antenna design. IEEE Access. 2021. V. 9. P. 18722–18751.
  4. Buzov A., Buzova M., Minkin M., Neshcheret A. Study of properties of metamaterial screen for isolation increase between antennas. 2021 International Applied Computational Electromagnetics Society Symposium (ACES) (ON-LINE, 1-5 August 2021). V. S17 Advances in Electromagnetics of Complex Media and Metamaterials. II. P. 1–2.
  5. Buzova M.A., Kljuev D.S., Minkin M.A., Neshheret A.M. Metod rascheta raspredelenija toka poloskovoj izluchajushhej struktury s kiral'noj podlozhkoj na osnove apparata integral'nyh gipersinguljarnyh uravnenij. Radiotehnika. 2020. T. 84. № 6 (11). S. 38–45
    (In Russian).
  6. Kas'janov A.O. Chastotno-izbiratel'nye poverhnosti. Metody proektirovanija i oblasti primenenija. Rostov-na-Donu; Taganrog:
    Izdatel'stvo JuFU. 2019. 165 s. (In Russian).
  7. Bespalov A.N., Buzov A.L., Kljuev D.S., Mishin D.V., Neshheret A.M. Mikropoloskovye antenny na osnove biizotropnyh i bianizotropnyh kiral'nyh metamaterialov v sistemah MIMO. Radiotehnika. 2019. № 3. S. 5–11 (In Russian).
  8. Bespalov A.N., Buzov A.L., Kljuev D.S., Neshheret A.M. Issledovanie antennyh kompleksov s ispol'zovaniem kiral'nyh metamaterialov i fraktal'noj geometrii izluchatelej dlja sistem MIMO. Fizika volnovyh processov i radiotehnicheskie sistemy. 2020. T. 23. № 4.
    S. 97-110 (In Russian).
Date of receipt: 04.04.2022
Approved after review: 18.04.2022
Accepted for publication: 31.05.2022