• Acta Photonica Sinica
  • Vol. 50, Issue 4, 198 (2021)
Shuai YUAN1, Guangzhen WANG1, Dehui FU1, Ke CHEN2、*, Ran AN2, Bo ZHANG2, Min GUO2, and Guangyin ZHANG2
Author Affiliations
  • 1High Voltage Research Institute, China Electric Power Research Institute, Beijing0092, China
  • 2School of Optoelectronic Engineering and Instrumentation Science, Dalian University of Technology, Dalian, Liaoning11604, China
  • show less
    DOI: 10.3788/gzxb20215004.0430002 Cite this Article
    Shuai YUAN, Guangzhen WANG, Dehui FU, Ke CHEN, Ran AN, Bo ZHANG, Min GUO, Guangyin ZHANG. Cross Interference Characteristics of Photoacoustic Spectroscopy Multi-gas Analyzer[J]. Acta Photonica Sinica, 2021, 50(4): 198 Copy Citation Text show less
    References

    [1] A A SIADA. Improved consistent interpretation approach of fault type within power transformers using dissolved gas analysis and gene expression programming. Energies, 12, 730(2019).

    [2] Kun XU, Jianhua ZHOU, Qiushi RU等. Development and prospect of transformer oil dissolved gas on-line monitoring technology. High Voltage Engineering, 30-32+35(2005).

    [3] Qu ZHOU, Chao TANG, Shiping ZHU et al. Detection of dissolved carbon monoxide in transformer oil using 1.567μm diode laser-based photoacoustic spectroscopy. Journal of Spectroscopy, 2015, 737635(2015).

    [4] Jun WU, Yuhang TIAN. Analysis and compare of photo-acoustic spect roscopy technology and gas chromatography technology in transformer on-line detecting. Electrical Engineering, 65-68(2013).

    [5] Shuli LAN, Kun SONG, Fang LIU. A case study on fault diagnosis of 500kv transformer with gas chromatography method. High Voltage Apparatus, 44, 381-382(2008).

    [6] Tianhe YANG, Weigen CHEN, Zhijun LI. Detection of trace ethyne by photoacoustic spectroscopy based on fiber-optic cantilever acoustic sensor. High Voltage Engineering, 46, 1922-1928(2020).

    [7] Lejun CHEN, Yuling LIU, Feihong YU. New research progress of photoacoustic spectroscopy gas detector. Optical Instruments, 28, 86-91(2006).

    [8] Ke CHEN, Zhenfeng GONG, Qingxu YU. Fiber-amplifier-enhanced resonant photoacoustic sensor for sub-ppb level acetylene detection. Sensors and Actuators A: Physical, 274, 184-188(2018).

    [9] M LASSEN, D B HARDER, A BRUSCH et al. Photoacoustic sensor for detection of oil contamination in compressed air systems. Optics Epress, 25, 1806-1814(2017).

    [10] R BAUER, G STEWART, W JOHNSTONE et al. 3D-printed miniature gas cell for photoacoustic spectroscopy of trace gases. Optics Letters, 39, 4796-4799(2014).

    [11] Ke CHEN, Shuai YUAN, Zhenfeng GONG等. Ultra-high sensitive photoacoustic spectrpmeter for trace gas detection based on fiber-optic acoustic sensors. Acta Optica Sinica, 38, 178-183(2018).

    [12] Dong CHEN, Wenqing LIU, Yujun ZHANG. Time sharing scanning multiplexing method of tunable diode laser spectroscopy system. Acta Photonica Sinica, 38, 1901-1905(2009).

    [13] Ke CHEN, Shuai LIU, Liang MEI et al. An auto-correction laser photoacoustic spectrometer based on 2 f/1 f wavelength modulation spectroscopy. Analyst, 145, 1524-1530(2020).

    [14] Di WANG, Ziyan NI, Mingji WANG等. Data processing of direct absorption spectroscopy for laser gas detection under modulated noise, 48, 0307001(2019).

    [15] E D MCNAGHTEN, K A GRANT, A M PARKES et al. Simultaneous detection of trace gases using multiplexed tunable diode lasers and a photoacoustic cell containing a cantilever microphone. Applied Physics B, 107, 861-871(2012).

    [16] Shenlong ZHA, Kun LIU, Tu TAN等. Application of photoacoustic spectroscopy in multi-component gas concentration detection. Acta Photonica Sinica, 46, 0612002(2017).

    [17] Zhenfeng GONG, Ke CHEN, Yang YANG et al. Photoacoustic spectroscopy based multi-gas detection using high-sensitivity fiber-optic low-frequency acoustic sensor. Sensors and Actuators B:Chemical, 357-363(2018).

    Shuai YUAN, Guangzhen WANG, Dehui FU, Ke CHEN, Ran AN, Bo ZHANG, Min GUO, Guangyin ZHANG. Cross Interference Characteristics of Photoacoustic Spectroscopy Multi-gas Analyzer[J]. Acta Photonica Sinica, 2021, 50(4): 198
    Download Citation