Chaotic instability of oscillations in microwave power amplifiers when amplifying a biharmonic signal
Morozova L.A.
1, S.V. Savel’ev
11Fryazino Branch, Kotel’nikov Institute of Radio Engineering and Electronics, Russian Academy of Sciences, Fryazino, Moscow oblast, Russia
Email: mila-morozova.ludmila@yandex.ru
The occurrence of chaotic instability of oscillations at the output of a single-stage amplifier on a powerful bipolar microwave transistor when a biharmonic signal is amplified is considered. It has been established that at a high level of the input signal at the output of the amplifier, the signal contains a significant chaotic component. Cases were experimentally studied when the frequency distance between the partial frequency components of a biharmonic signal is close to the gain band and when it is much smaller than this band. It has been established that in the first case, the chaos in oscillations is associated with the emergence of a sequence of trains of a forced oscillatory process with arbitrary initial phases and durations. In the second case, the appearance of a chaotic pedestal is associated with the chaos in the passive underexcited mode of the nonlinear circuit formed by the capacitance of the p-n junction and the input matching circuits of the amplifier stage. Keywords: chaos, power amplifier, biharmonic signal, sequence of oscillation trains, chaotic modulation.
- J. Henrie, A.J. Christianson, W.J. Chappell. IEEE Transactions on Microwave Theory and Techniques, 58 (5), 1230 (2010). DOI: 10.1109/TMTT.2010.2045527
- A.S. Kotov, P.M. Meleshkevich, A.D. Zakurdaev, M.S. Vostrov, A.V. Polyakov, A.V. Khromov, S.M. Zakharov, V.P. Motorin, V.M. Polyakova, E.M. Shipilo, E.A. Grishina, E.T. Kharabadze, N.I. Levashov. Elektronnaya tekhnika, Ser. 1, SVCh-tekhnika, 3 (526), 90 (2013) (in Russian).
- D.E. Root, J. Verspecht, J. Horn, M. Marcu. X-Parameters, characterization, modeling, and design of nonlinear RF and microwave components (Cambridge University Press, The Cambridge RF and Microwave Engineering Series, 2013)
- S.V. Savelyev, L.A. Morozova. ZhTF, 90 (12), 2148 (2020). (in Russian). DOI: 10.21883/JTF.2020.12.50135.418-19
- N.V. Stankevich, O.V. Astakhov, A.P. Kuznetsov, E.P. Seleznev. Pisma v ZhTF (in Russian), 44 (10), 46 (2018). DOI: 10.21883/PJTF.2018.10.46098.17042
- E.P. Seleznev, N.V. Stankevich. Pisma v ZhTF (in Russian), 45 (2), 59 (2019). DOI: 10.21883/PJTF.2019.02.47227.17473
- V.A. Buts, D.M. Vavriv. In: International Kharkov symposium on physics and engineering of microwave, millimeter and submillimeter waves (MSMW, Kharkov, 2013)
- A.Yu. Nemets, D.M. Vavriv. Voprosy atomnoy nauki i tekhniki (in Russian). 98 (4), 282 (2015)
- L.A. Belov, A.S. Kondrashov, S.V. Petushkov. Elektrosvyaz, 5, 28 (2015). URL: https://rucont.ru/efd/419915
- F. Sechi, M. Bujatti. Solid-states microwave high-power amplifiers (Artech House Publishers; 1st edition, August 1, 2009)
Подсчитывается количество просмотров абстрактов ("html" на диаграммах) и полных версий статей ("pdf"). Просмотры с одинаковых IP-адресов засчитываются, если происходят с интервалом не менее 2-х часов.
Дата начала обработки статистических данных - 27 января 2016 г.