Generation of sub-GW RF pulses in nonlinear transmission lines / V. V. Rostov [et al.]

Альтернативный автор-лицо: Rostov, V. V., Vladislav Vladimirovich;Bykov, N. M.;Bykov, D. N.;Gunin, A. V., Alexander Vladimirovich;Klimov, A. I., specialist in the field of electronics, Associate Professor of Tomsk Polytechnic University, Candidate of physical and mathematical sciences, 1955-, Aleksey Ivanovich;Koval'chuk, O. B., Oleg Borisovich;Kutenkov, V. O., Viktor Olegovich;Romanchenko, I. V., Ilya ViktorovichЯзык: английский.Страна: .Резюме или реферат: The paper presents the results of recent experiments on the generation of subgigawatt RF pulses using two types of nonlinear transmission lines (NLTL's). In the high-voltage coaxial lines, we used: (1) periodic gas gap structure and (2) uniformly loaded saturated ferrite with axial bias. The concept of the first element is based on the in-phase composition of RF fields produced by currents in the periodic gas gap structure of the inner conductor. The most stable and efficient narrow-band operation of the system with 12 cylindrical gas gaps (200 kV, 18 ns) was realized at a radio frequency of 1 GHz and an RF power of several hundreds of megawatt. The maximum efficiency of power conversion was 10%. The bandwidth was about 10 % at a ?3 db level. The second NLTL lacked spatial dispersion and self-consistent dynamics of the traveling wave was observed in the coherent magnetic switching in ferrites with axial bias. The pulsed voltage driver produced 9-ns pulses of voltage between 110 and 290 kV. With the optimum external magnetic field, the efficiency of energy conversion for the first eight oscillations was ?10%. The peak power of oscillations produced on a resistive load was ?400 MW. A linear increase in central frequency from 600 MHz to 1.1 GHz with incident pulse amplitude was found..Примечания о наличии в документе библиографии/указателя: [References: 7 tit.].Аудитория: .Тематика: труды учёных ТПУ | электронный ресурс Ресурсы он-лайн:Щелкните здесь для доступа в онлайн
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[References: 7 tit.]

The paper presents the results of recent experiments on the generation of subgigawatt RF pulses using two types of nonlinear transmission lines (NLTL's). In the high-voltage coaxial lines, we used: (1) periodic gas gap structure and (2) uniformly loaded saturated ferrite with axial bias. The concept of the first element is based on the in-phase composition of RF fields produced by currents in the periodic gas gap structure of the inner conductor. The most stable and efficient narrow-band operation of the system with 12 cylindrical gas gaps (200 kV, 18 ns) was realized at a radio frequency of 1 GHz and an RF power of several hundreds of megawatt. The maximum efficiency of power conversion was 10%. The bandwidth was about 10 % at a ?3 db level. The second NLTL lacked spatial dispersion and self-consistent dynamics of the traveling wave was observed in the coherent magnetic switching in ferrites with axial bias. The pulsed voltage driver produced 9-ns pulses of voltage between 110 and 290 kV. With the optimum external magnetic field, the efficiency of energy conversion for the first eight oscillations was ?10%. The peak power of oscillations produced on a resistive load was ?400 MW. A linear increase in central frequency from 600 MHz to 1.1 GHz with incident pulse amplitude was found.

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