Journal of Applied Optics, Volume. 45, Issue 6, 1219(2024)
Optimization analysis of optoelectronic parameters of laser telemetry systems for hydrogen leakage detection in hydrogen-involved equipment
[1] W T KOO, H J CHO, D H KIM et al. Chemiresistive hydrogen sensors: fundamentals, recent advances, and challenges. ACS Nano, 14, 14284-14322(2020).
[2] Z ABDIN, A ZAFARANLOO, A RAFIEE et al. Hydrogen as an energy vector. Renewable and Sustainable Energy Reviews, 120, 109620(2020).
[3] Z CHEN, K HU, P YANG et al. Hydrogen sensors based on Pt-decorated SnO2 nanorods with fast and sensitive room-temperature sensing performance. Journal of Alloys and Compounds, 811, 152086(2019).
[4] Zhigang LIU. Research on electrochemical technologies for harmful gas detection. Light Industry Science and Technology, 35, 29-30(2019).
[5] I I IVANOV, A M BARANOV, V A TALIPOV et al. Investigation of catalytic hydrogen sensors with platinum group catalysts. Sensors and Actuators B: Chemical, 346, 130515(2021).
[6] Weijian ZHENG, Chunchao YU, Zhixiong YANG et al. Research on infrared telemetry technology of environmental pollution gases in broad spectral band. Infrared and Laser Engineering, 48, 108-115(2019).
[7] Xiaofeng LIANG, Zehou YANG, Shunyan WANG et al. Progress of toxic and hazardous gas telemetry based on differential absorption lidar. Laser Technology, 45, 53-60(2021).
[8] B DENG, C SIMA, Y AO et al. Modified laser scanning technique in wavelength modulation spectroscopy for advanced TDLAS gas sensing. Optics and Lasers in Engineering, 151, 106906(2022).
[9] Yanwen ZHOU, Shuzhuo MIAO, Dan YAO et al. A laser methane telemetry system based on wavelength-modulated spectroscopy and wavelet denoising. Chinese Journal of Lasers, 47, 306-314(2020).
[10] Jun XU, Yunfei LI, Yue CHENG et al. Development of methane leakage telemetry system based on TDLAS-WMS. Laser & Optoelectronics Progress, 60, 376-384(2023).
[11] Zhen ZHOU, Yue CHENG, Songfeng YIN et al. Simulation analysis and experimental study of high-precision laser methane telemetry parameters for non-cooperative targets. Optoelectronics·Laser, 34, 861-871(2023).
[12] Dong LIU, Yue CHENG, Zhen ZHOU et al. Simulation analysis and experimental research on calibration method of handheld laser methane telemetry instrument based on Simulink. Applied Laser, 42, 106-118(2022).
[13] Y FENG, J CHANG, X CHEN et al. Application of TDM and FDM methods in TDLAS based multi-gas detection. Optical and Quantum Electronics, 53, 1-11(2021).
[14] H LU, C ZHENG, L ZHANG et al. A remote sensor system based on TDLAS technique for ammonia leakage monitoring. Sensors, 21, 2448(2021).
[15] Junwei JIA, Wei LI, Hao CHAI et al. Gas detection technology algorithm based on TDLAS. Infrared and Laser Engineering, 48, 202-208(2019).
[16] D GENG, D WANG, Y LI et al. Detection stability improvement of near-infrared laser telemetry for methane emission from oil/gas station using a catadioptric optical receiver. Energies, 16, 3854(2023).
[17] Jinyi LI, Hongqing FAN, Ziwei YU et al. Non-cooperative target TDLAS indoor CO2 telemetry. Journal of Instrumentation, 41, 229-236(2020).
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Meiqi ZHAO, Wei ZHOU, Di WANG, Yan LYU, Yushuang LI, Yu PU, Dong LI, Qidong FENG, Shuxian CHEN, Yilang LUO. Optimization analysis of optoelectronic parameters of laser telemetry systems for hydrogen leakage detection in hydrogen-involved equipment[J]. Journal of Applied Optics, 2024, 45(6): 1219
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Received: Jul. 3, 2023
Accepted: --
Published Online: Jan. 14, 2025
The Author Email: ZHOU Wei (周围), WANG Di (王迪(1992—))