Laser & Infrared, Volume. 55, Issue 7, 1099(2025)
Optimization of infrared temperature measurement using multi-band spatial azimuth fusion
[5] [5] Pan D, Jiang Z H, CHEN Z P, et al. Temperature measurement method for blast furnace molten iron based on infrared thermography and temperature reduction model[J]. Sensors, 2018, 18(11): 3792.
[6] [6] Play-Montmany N, Tattersall G J. Spot size, distance and emissivity errors in field applications of infrared thermography[J]. Methods in Ecology and Evolution, 2021, 12(5): 828-840.
[7] [7] Brazane S, Riou O, Delaleux F, et al. Management of thermal drift of bolometric infrared cameras: limits and recommendations[J]. Quantitative Infrared Thermography Journal, 2025, 22(1): 54-69.
[8] [8] Dong Y F, Zhao B W, Yang J X, et al. Two-stage convolutional neural network for joint removal of sensor noise and background interference in lock-in thermography[J]. NDT & E International, 2023, 137: 102816.
[9] [9] Liu J L, Luan X L, Liu F. Near-infrared quality monitoring modeling with multi-scale CNN and temperature adaptive correction[J]. Infrared Physics & Technology, 2024, 137: 105162.
[10] [10] Jiao L Z, Dong D M, Zhao X D, et al. Compensation method for the influence of angle of view on animal temperature measurement using thermal imaging camera combined with depth image[J]. Journal of Thermal Biology, 2016, 62: 15-19.
Get Citation
Copy Citation Text
XIONG Li-chun, SHI Dong-ping. Optimization of infrared temperature measurement using multi-band spatial azimuth fusion[J]. Laser & Infrared, 2025, 55(7): 1099
Category:
Received: Mar. 6, 2025
Accepted: Sep. 12, 2025
Published Online: Sep. 12, 2025
The Author Email: SHI Dong-ping (shidongping@xtu.edu.com)