Infrared Technology, Volume. 47, Issue 2, 141(2025)
Sensitivity Analysis of Thermal Design Parameters of High-Sensitivity Optical Detection Module
[1] [1] BORGONOVO E, PLISCHKE E. Sensitivity analysis: a review of recent advances[J]. European Journal of Operational Research, 2016, 248(3): 869-887.
[5] [5] James J Scire Jr, Frederick L Dryer, Richard A Yetter. Comparison of global and local sensitivity techniques for rate constants determined using complex reaction mechanisms[J]. International Journal of Chemical Kinetics, 2001, 33(12): 784-802.
[7] [7] CUI Qinglong, LIN Guanyu, CAO Diansheng, et al. Thermal design parameters analysis and model updating using Kriging model for space instruments[J]. International Journal of Thermal Sciences, 2022, 171: 107239.
[8] [8] HU Diqi, CHI R Q, LIU Y Y, et al. Sensitivity analysis of spacecraft in micrometeoroids and orbital debris environment based on panel method[J]. Defence Technology, 2023, 19: 126-142.
[9] [9] ZHANG Gaopeng, ZHAO Hong, CHEN Yaohong, et al. Optimization thermal design method for space cameras based on thermo-optical analysis and Taguchi method[J]. Optical Engineering, 2020, 59(7): 1.
[10] [10] XIONG Yan, GUO Liang, YANG Yuting, et al. Intelligent sensitivity analysis framework based on machine learning for spacecraft thermal design[J]. Aerospace Science and Technology, 2021, 118: 106927.
[13] [13] XIONG Yan, GUO Liang, TIAN Defu, et al. Intelligent optimization strategy based on statistical machine learning for spacecraft thermal design[J]. IEEE Access, 2020, 8: 204268-204282.
Get Citation
Copy Citation Text
JIN Yongwei, LIU Chunlong. Sensitivity Analysis of Thermal Design Parameters of High-Sensitivity Optical Detection Module[J]. Infrared Technology, 2025, 47(2): 141