A.N. Zikiy¹, A.S. Kochubey²
¹‧²JSC "Taganrog Scientific Research Institute of Communications" (Taganrog, Rostov Region, Russia)
¹zikiy50@mail.ru, ²l.co4ubey@ya.ru
A statistical analysis of three parameters of the generators was carried out: power, current and frequency deviation from the nominal value. Passport data for a batch of 270 autogenerators were used as the initial data for the analysis. The analysis results include three histograms, mathematical expectations, variances, and standard deviations. It is advisable to use the results of the analysis when planning production, as well as when choosing the type of autogenerator. In the presence of a large array of experimental data on product parameters, it is possible to identify not only the individual data of each sample, but also their group characteristics, such as mathematical expectation, variance, standard deviation of power, frequency and current consumption, distribution law, production stock, etc. The availability of such information makes it possible to plan production more accurately, taking into account the yield percentage, the risks associated with a large production program, and production stocks of materials and components.
The purpose of this work is to obtain statistical parameters of the power, frequency, and current consumption of a batch of Orsel autogenerators. The authors are not aware of previously published papers with such results. Previously, the authors conducted a similar study for a batch of microwave power amplifiers of the M421248 type used in an antenna array. The initial data for this work were the passports attached by the manufacturer to each copy of the product in the amount of 270 pieces.
Zikiy A.N., Kochubey A.S. Statistical characteristics of three parameters of a batch of generators with dielectric resonators. Radioengineering. 2025. V. 89. № 11. P. 198−202. DOI: https://doi.org/10.18127/j00338486-202511-25 (in Russian)
- Chenakin A.V., Gorevoi A.V. Radiochastotnye komponenty. Prakticheskoe postroenie sintezatorov chastot SVCh-diapazonov. M.: Goryachaya liniya - Telekom. 2021. 280 s. (in Russian)
- Baranov A.V., Krevskii M.A. Tranzistornye avtogeneratory garmonicheskikh SVCh-kolebanii. M.: Goryachaya liniya - Telekom. 2021. 276 s. (in Russian)
- Grebennikov A. RF and Microwave transistor oscillator design. Chichester. England: John Wiley & Sons, Ltd. 2007. 441 p.
- Odiniec M. RF and Microwave transistor oscillator design. Artech House. Boston, London. 2002. 398 p.
- Kolomin V.M., Rybkin V.N., Iovdalskii V.A., Sokolov I.P. Dielektricheskie rezonatory dlya izdelii elektronnoi tekhniki SVCh-diapazona: Ucheb. posobie. M.: Kurs. 2021. 150 s. (in Russian)
- Belov L.A. Ustroistva formirovaniya SVCh-signalov i ikh komponenty: Ucheb. posobie. M.: Izdatelskii dom MEI. 2010. 326 s. (in Russian)
- Zikii A.N., Pomazanov A.V. Stabilnost chastoty generatorov SVCh: Ucheb. posobie. Rostov-na-Donu. Taganrog: Izd-vo YuFU. 2017. 138 s. (in Russian)
- Zikii A.N., Pomazanov A.V. Peredatchiki pomekh sovremennym sredstvam svyazi: Ucheb. posobie. Rostov-na-Donu. Taganrog: Izd-vo YuFU. 2020. 176 s. (in Russian)
- Zikii A.N., Kochubei A.S. Tranzistornyi generator s dielektricheskim rezonatorom. Izvestiya YuFU. Ser. Tekhnicheskie nauki. 2024. № 2. S. 183−190. (in Russian)
- Zikii A.N., Kochubei A.S. Eksperimentalnoe issledovanie geterodinnogo modulya. Izvestiya YuFU. Ser. Tekhnicheskie nauki. 2020. № 6. S. 189−196. (in Russian)
- Zikii A.N., Ivlev V.S., Kochubei A.S. Usilitel moshchnosti dlya antennoi reshetki. Radiotekhnika. 2022. № 11. S. 69−73. (in Russian)
- Zikii A.N., Zlaman P.N., Sivokoz E.V. Eksperimentalnoe issledovanie dvukh avtogeneratorov s dielektricheskimi rezonatorami. Uspekhi sovremennoi elektroniki. 2015. № 10. S. 198−209. (in Russian)
- Bazhilov V.A. Raschet i issledovanie tsilindricheskikh ekranirovannykh SVCh i KVCh kolebatelnykh sistem na osnove dielektricheskikh rezonatorov. Avtoreferat dis. … kand. tekhn. nauk. Nizhnii Novgorod: NTGU. 2007. 20 s. (in Russian)
- Tsarapkin D.P. Metody generirovaniya SVCh kolebanii s minimalnym urovnem fazovykh shumov. Avtoreferat dis. … dokt. tekhn. nauk. M.: MEI. 2004. (in Russian)
- Patent SShA № 6.714.089. High frequency signal source and method of generating same using dielectric resonator oscillator (DRO) circuit. 30.03.2004.
- Patent SShA № 4.386.326. Dielectric-resonator-tuned Microwave solid-state oscillator. 30.05.1983.

