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Preventing method of acoustic resonance in the high-pressure discharge lamps Cover

Preventing method of acoustic resonance in the high-pressure discharge lamps

Open Access
|May 2020

References

  1. [1] D. Panfilov, V. Polyakov, Y. Polyakov, and A. Baryshnikov, “Electronic start-up devices for tubular fluorescent lamps”, Engineering microelectronics, vol. 2, pp. 18-22, 1999. Available: http://www.chipnews.ru/html.cgi/arhivi/9902/stat-15.htm [Accessed 1 June 2019].
  2. [2] V. Medvid, I. Beliakova, and V. Piscio, “Analysis of methods and schemes for preventing occurrence of the acoustic resonance phenomenon high-pressure gas discharge lamps”, International scientific and technical conference Fundamental and applied problems of modern technologies to the 100-th anniversary of the foundation of the National Academy of Sciences of Ukraine and to the commemoration of Ivan Puluj, Ternopil, 2018, pp. 259-260. Available: http://elartu.tntu.edu.ua/handle/lib/25419 [Accessed 1 June 2019].
  3. [3] A. Chammam, W. Nsibi, M. N. Nehdi, B. Mrabet and A. Sellami, “Behaviour of a high-intensity discharge lamp fed by a high-frequency dimmable electronic ballast”, Lighting Research & Technology, vol. 49, no.2, pp. 277-284, 2016.Available: 10.1177/1477153516650234.10.1177/1477153516650234
  4. [4] S. Epron, M. Aubes, J. Damelincourt, and A. Cojocaru, “Acoustic resonance phenomena high-pressure discharge lamps”, High Temperature Material Processes (An International Quarterly of High-Technology Plasma Processes), vol. 3, no.2-3, pp. 141-155, 1999.Available: 10.1615/hightempmatproc.v3.i2-3.10.10.1615/HighTempMatProc.v3.i2-3.10
  5. [5] L. Chhun, P. Maussion, S. Bhosle, and G. Zissis, “Characterization of Acoustic Resonance a High-Pressure Sodium Lamp”, IEEE Transactions on Industry Applications, vol. 47, no.2, pp. 1071-1076, 2011.Available: 10.1109/tia.2010.2102993 [Accessed 5 February 2020].10.1109/TIA.2010.2102993
  6. [6] Sun, Yiyoung, Panasonic, Electric, Works, Co Ltd, “Method and driving circuit for HID lamp electronic ballast”, USA pat. US6144172A, 2000.
  7. [7] R. Bonazoli, and F. Paget, “Method and circuit for operating discharge lamp”, USA pat. US4373146A, 1983.
  8. [8] L. Varakin Communication systems with noise-like signals, Moskow, Radio and Communication, 1985, p.384.
  9. [9] V. Medvid, I. Beliakova, and V. Piscio, “Acoustic resonance prevention high-pressure discharge lamps with a pseudo-random power signal”, Theoretical and applied aspects radio engineereing, instrument making and computer technogies, Ternopil, Ukraine, 2019, pp. 317-320.Available: http://www.chipnews.ru/html.cgi/arhivi/9902/stat-15.htm [Accessed 1 June 2019].
  10. [10] N. Tarasenko, “Development and use of mathematical models of gas-discharge lamps for calculating electrical circuits of switching devices”, Dissertation of PhD graduates, Moscow Power Engineering Institute, 1980.
  11. [11] S. Epron, M. Aubes, J. Damelincourt and A. Cojocaru, “Acoustic Resonance Phenomena in High-pressure Discharge Lamps”, High Temperature Material Processes (An International Quarterly of High-Technology Plasma Processes), vol. 3, no.2-3, pp. 141-155, 1999.Available: 10.1615/hightempmatproc.v3.i2-3.10 [Accessed 1 February 2020].10.1615/HighTempMatProc.v3.i2-3.10
  12. [12] A. Chammam, W. Nsibi, M. N. Nehdi, B. Mrabet and A. Sellami, “Behaviour of a high-intensity discharge lamp fed by a high-frequency dimmable electronic ballast”, Lighting Research & Technology, vol. 49, no.2, pp. 277-284, 2016.Available: 10.1177/1477153516650234 [Accessed 1 February 2020].10.1177/1477153516650234
DOI: https://doi.org/10.2478/jee-2020-0011 | Journal eISSN: 1339-309X | Journal ISSN: 1335-3632
Language: English
Page range: 69 - 77
Submitted on: Oct 1, 2019
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Published on: May 13, 2020
In partnership with: Paradigm Publishing Services
Publication frequency: 6 issues per year

© 2020 Volodymyr Medvid, Iryna Beliakova, Vadim Piscio, Volodymyr Savkiv, Frantisek Duchon, published by Slovak University of Technology in Bratislava
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.