• High Power Laser and Particle Beams
  • Vol. 32, Issue 4, 045103 (2020)
Xiaoguo Jiang, Xinglin Yang, Wei Jiang, Shuqing Liao*, Zongyang Zang, Yunlong Liu, Quanhong Long, and Jiayuan Li
Author Affiliations
  • Institute of Fluid Physics, CAEP, Mianyang 621999, China
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    DOI: 10.11884/HPLPB202032.190431 Cite this Article
    Xiaoguo Jiang, Xinglin Yang, Wei Jiang, Shuqing Liao, Zongyang Zang, Yunlong Liu, Quanhong Long, Jiayuan Li. Measurement signal processing technology for magnetic axis of solenoid based on pulsed tuat-wire method[J]. High Power Laser and Particle Beams, 2020, 32(4): 045103 Copy Citation Text show less
    Main measurement system principle of magnetic axis of solenoid based on pulsed tuat-wire method
    Fig. 1. Main measurement system principle of magnetic axis of solenoid based on pulsed tuat-wire method
    Detection principle of vibration position signal of tuat-wire
    Fig. 2. Detection principle of vibration position signal of tuat-wire
    Measured waveform of tilt and its compare with the work of Wang Ke et al, 2015[6]
    Fig. 3. Measured waveform of tilt and its compare with the work of Wang Ke et al, 2015[6]
    Measured waveform of offset and its compare with the work of Wang Ke et al, 2015[6]
    Fig. 4. Measured waveform of offset and its compare with the work of Wang Ke et al, 2015[6]
    Typical results of offset measurement sensitivity and tilt scale with diffferent gains (G1 and G2)
    Fig. 5. Typical results of offset measurement sensitivity and tilt scale with diffferent gains (G1 and G2)
    Potential improvement for reducing influence from environment light
    Fig. 6. Potential improvement for reducing influence from environment light
    Xiaoguo Jiang, Xinglin Yang, Wei Jiang, Shuqing Liao, Zongyang Zang, Yunlong Liu, Quanhong Long, Jiayuan Li. Measurement signal processing technology for magnetic axis of solenoid based on pulsed tuat-wire method[J]. High Power Laser and Particle Beams, 2020, 32(4): 045103
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