• High Power Laser and Particle Beams
  • Vol. 34, Issue 6, 064006 (2022)
Xiaoguo Jiang, Xinglin Yang, Wei Jiang*, Xiaobing Jing, Nan Chen, Jin Li, Yuan Li, Yuan Wang, Bangliang Liu, Zongyang Zang, Mao Chen, and Yongwei Wang
Author Affiliations
  • Institute of Fluid Physics, CAEP, Mianyang 621900, China
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    DOI: 10.11884/HPLPB202234.210133 Cite this Article
    Xiaoguo Jiang, Xinglin Yang, Wei Jiang, Xiaobing Jing, Nan Chen, Jin Li, Yuan Li, Yuan Wang, Bangliang Liu, Zongyang Zang, Mao Chen, Yongwei Wang. Technique study to improve radiographic-testing reliability basing on self-excitation of pulsed power system[J]. High Power Laser and Particle Beams, 2022, 34(6): 064006 Copy Citation Text show less
    Typical macro-scheduling for radiographic test
    Fig. 1. Typical macro-scheduling for radiographic test
    Judgement of self-excitation for equipment of pulsed power system
    Fig. 2. Judgement of self-excitation for equipment of pulsed power system
    Potential risk if the control is delayed
    Fig. 3. Potential risk if the control is delayed
    Improvement after control strategy and technique change
    Fig. 4. Improvement after control strategy and technique change
    Typical discharging waveforms in LIA pulsed power system
    Fig. 5. Typical discharging waveforms in LIA pulsed power system
    Principle of passive detector for discharging
    Fig. 6. Principle of passive detector for discharging
    Principle and structure of monitor and control system
    Fig. 7. Principle and structure of monitor and control system
    Signal process of monitor and control system
    Fig. 8. Signal process of monitor and control system
    Xiaoguo Jiang, Xinglin Yang, Wei Jiang, Xiaobing Jing, Nan Chen, Jin Li, Yuan Li, Yuan Wang, Bangliang Liu, Zongyang Zang, Mao Chen, Yongwei Wang. Technique study to improve radiographic-testing reliability basing on self-excitation of pulsed power system[J]. High Power Laser and Particle Beams, 2022, 34(6): 064006
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