Calculation of frequency and power characteristics of the composite metal-dielectric resonator using the method of partial regions
A new method for calculating the frequency and power characteristics of different modes of a microwave metal-dielectric resonator has been proposed. The results of measurements of experimental specimens are presented that are in good agreement with calculation results. The relationships of the frequ...
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Veröffentlicht in: | Radioelectronics and communications systems 2016-05, Vol.59 (5), p.229-236 |
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creator | Savin, K. G. Golubeva, I. P. Prokopenko, Yu. V. |
description | A new method for calculating the frequency and power characteristics of different modes of a microwave metal-dielectric resonator has been proposed. The results of measurements of experimental specimens are presented that are in good agreement with calculation results. The relationships of the frequency and power characteristics of a resonator as a function of its geometrical and electrophysical parameters were obtained by using the method of partial regions. A high sensitivity of the main mode resonant frequency to the thickness of air inhomogeneity was detected. In this case the introduction of inhomogeneity increases the resonator Q-factor. Thus, the proposed design can be used as a high-Q tunable resonator. |
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The results of measurements of experimental specimens are presented that are in good agreement with calculation results. The relationships of the frequency and power characteristics of a resonator as a function of its geometrical and electrophysical parameters were obtained by using the method of partial regions. A high sensitivity of the main mode resonant frequency to the thickness of air inhomogeneity was detected. In this case the introduction of inhomogeneity increases the resonator Q-factor. Thus, the proposed design can be used as a high-Q tunable resonator.</abstract><cop>New York</cop><pub>Allerton Press</pub><doi>10.3103/S0735272716050058</doi><tpages>8</tpages></addata></record> |
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title | Calculation of frequency and power characteristics of the composite metal-dielectric resonator using the method of partial regions |
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