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Tianbao MA, Yauheni KALENKOVICH, Valeriy ROKACH, Anatoly OSIPOV. Generation of low-temperature plasma by pulse-width modulated signals and monitoring of the interaction thereof with the surface of objects[J]. Plasma Science and Technology, 2025, 27(1): 015403. DOI: 10.1088/2058-6272/ad8a38
Citation: Tianbao MA, Yauheni KALENKOVICH, Valeriy ROKACH, Anatoly OSIPOV. Generation of low-temperature plasma by pulse-width modulated signals and monitoring of the interaction thereof with the surface of objects[J]. Plasma Science and Technology, 2025, 27(1): 015403. DOI: 10.1088/2058-6272/ad8a38

Generation of low-temperature plasma by pulse-width modulated signals and monitoring of the interaction thereof with the surface of objects

More Information
  • Author Bio:

    Tianbao MA: 714922741@qq.com

    Anatoly OSIPOV: osipov@bsuir.by

  • Corresponding author:

    Tianbao MA, 714922741@qq.com

    Anatoly OSIPOV, osipov@bsuir.by

  • Received Date: June 23, 2024
  • Revised Date: October 20, 2024
  • Accepted Date: October 21, 2024
  • Available Online: October 22, 2024
  • Published Date: December 25, 2024
  • The article discusses the use of pulse-width modulation signals to generate low-temperature atmospheric plasma in an inert gas environment. The results of studies of the energy consumption of a low-temperature plasma generation system depending on the duty rate, as well as the pulse repetition rate, are presented. The operating modes of the system have been established, in which a minimum of energy consumption is achieved. The issues of evaluating the interaction of plasma with objects based on the analysis of changes in signal parameters in the high-voltage circuit of the generator are also considered.

  • [1]
    Reema et al 2022 Front. Phys. 10 942952 doi: 10.3389/fphy.2022.942952
    [2]
    Von Woedtke T, Metelmann H R and Weltmann K D 2014 Contrib. Plasma Phys. 54 104 doi: 10.1002/ctpp.201310068
    [3]
    Kumar A et al 2021 Eur. Phys. J. D 75 283 doi: 10.1140/epjd/s10053-021-00283-5
    [4]
    Adamovich I et al 2022 J. Phys. D: Appl. Phys. 55 373001 doi: 10.1088/1361-6463/ac5e1c
    [5]
    Itshoki Y S and Ovchinnikov N I 1972 Pulse and digital devices, “Soviet Radio”, p 592 (In Russian
    [6]
    Mek R 2008 Switching power supplies, “Theoretical foundations of design and a guide to practical application”, p272 (In Russian
    [7]
    Kang H R et al 2017 IEEE Trans. Plasma Sci. 45 691 doi: 10.1109/TPS.2017.2678527
    [8]
    Su C F et al 2021 Electronics 10 2119 doi: 10.3390/electronics10172119
    [9]
    Osipov A N and Kotov D A 2023 Method of diagnostics of dielectric barrier discharge plasma (Date of issue 05.12.2023), Eurasian Patent for invention No. 045560, Russian Federation (In Russian
    [10]
    Osipov A N 2023 Device for measuring current in a high-voltage circuit (Date of issue 12.01.2023), Eurasian Patent for invention No. 042096, Russian Federation (In Russian
    [11]
    Bladyko Y V 2009 Electrical engineering and electronics p 90. (In Russian
    [12]
    Gonorovsky I S 2006 Radio engineering circuits and signals Moscow: Drofa, p 719 (In Russian
    [13]
    Osipov A N, Kotov D A and Kalenkovich E N 2023 Method of generating dielectric barrier discharge plasma (Date of issue 29.05.2023), Eurasian Patent for invention No. 043498, Russian Federation (In Russian
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