"JOURNAL OF RADIO ELECTRONICS" (Zhurnal Radioelektroniki ISSN 1684-1719, N 9, 2018

contents of issue      DOI  10.30898/1684-1719.2018.9.3     full text in Russian (pdf)  



O. A. D’yakonova, S. V. Marechek

Fryazino Branch of Kotelnikov Institute of Radioengineering and Electronics of Russian Academy of Sciences, Vvedensky Sq.1, Fryazino Moscow region 141190, Russia


The paper is received on August 31, 2018


Abstract. In the article the questions of modeling of the experimental complex of the nine measurement setup based on scalar network are analyzed. FEKO program was used to create a model of the complex. The model is designed to optimize the design parameters of radio absorbing materials with specified properties. Comparative analysis of design, measurement and model (FEKO software) characteristics as the elements of the measurement setup and the samples of radar absorbing materials is made. A good agreement of the results is obtained. The proposed simulation model completely repeats the work of the measuring equipment. The virtual model allows us to conduct research and optimization of dielectric parameters of the RPM medium for a specific problem of shielding or absorption of electromagnetic radiation without material costs (manufacturing of samples of RPM and setting up of the measuring stand). This can significantly reduce the time when developing new compositions of the RPM environment. It became possible to conduct an operational analysis of the modernization of methods and devices of the measuring system in order to increase the accuracy of measurement or reliability (greater reliability) of the results.

Key words: modeling, FEKO program, scalar network analyzers, radar absorbing material.


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Available at http://jre.cplire.ru/jre/oct16/7/text.pdf (In Russian)

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For citation:
O. A. D’yakonova, S. V. Marechek. Simulation in FEKO and measurement system parameters of RPM. Zhurnal Radioelektroniki - Journal of Radio Electronics. 2018. No. 9. Available at http://jre.cplire.ru/jre/sep18/3/text.pdf

DOI  10.30898/1684-1719.2018.9.3