Effect analysis of switch prefire in linear transformer drivers

  • Peng Liu
  • , Fengju Sun
  • , Hao Wei
  • , Xiaofeng Jiang
  • , Xuandong Liu
  • , Zhiguo Wang
  • , Jiahui Yin
  • , Tianxue Liang
  • , Aici Qiu

Research output: Contribution to journalArticlepeer-review

14 Scopus citations

Abstract

In this paper, the circuit model capable of dealing with magnetizing characteristics of the magnetic cores and switch prefire is established for linear transformer driver (LTD) cavities in PSPICE. Through simulation, the effects of switch prefire on other components in LTD and its output current pulse have been analyzed associated with the variation of energy loss in magnetic cores. Simulation results indicate that a switch prefire in one cavity would produce oscillations added to the charge voltage of the other switches in this cavity and cavities adjacent immediately. The magnitudes of such oscillations have an intimate relation with the magnetic core loss equivalent resistance. The loss equivalent resistances in the range from 4 to 6 Ω have produced moderate voltage oscillations. Experiments on the 300-kA LTD cavity developed by the Northwest Institute of Nuclear Technology proved that such oscillations added to the charge voltage of other switches are likely to increase the breakdown probability of them.

Original languageEnglish
Article number6084760
Pages (from-to)83-89
Number of pages7
JournalIEEE Transactions on Plasma Science
Volume40
Issue number1
DOIs
StatePublished - Jan 2012

Keywords

  • Circuit simulation
  • linear transformer drivers (LTDs)
  • magnetic core
  • pulsed-power systems
  • switch prefire

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