Infrared and Laser Engineering, Volume. 49, Issue 4, 0404003(2020)
Infrared radiation imaging calculation of aerial target based on CUDA parallel computing
[2] [2] Fisher A S, Rani S L. Comparison of wide b, narrow b, SLW models with HITRAN HITEMP f predicting radiative heat transfer[C]47th AIAA Thermophysics Conference, 2017.
[4] [4] Bao Xingdong, Mao Hongxia, Wei Jie, et al. Research on infrared radiation signatures of highaltitude plume based on DSMC method[C]International Symposium on Optoelectronic Technology Application 2016:101570D.
[7] 黄建峰, Jianfeng Huang, 范小礼, Xiaoli Fan, 王俊, Jun Wang. Infrared dynamic scene simulation based on OSG. Infrared and Laser Engineering, 42, 18-23(2013).
[9] T V Russkova. Monte Carlo simulation of the solar radiation transfer in a cloudy atmosphere with the use of graphic processor and NVIDIA CUDA technology. Atmospheric & Oceanic Optics, 31, 119-130(2018).
[10] X Guo, J Wu, Z Wu. Parallel computation of aerial target reflection of background infrared radiation: performance comparison of OpenMP, OpenACC, and CUDA implementations. IEEE Journal of Selected Topics in Applied Earth Observations & Remote Sensing, 9, 1653-1662(2016).
[12] [12] Ludwig C B. Hbook of Infrared Radiation from Combustion Gases. NASA SP3080[Z]. NASA Special Publication, 1973, 3080(4): 1705−1708.
[14] G Avital, Y Cohen, L Gamss. Experimental and computational study of infrared emission from under expanded rocket exhaust plumes. Journal of Thermophysics & Heat Transfer, 15, 377-383(2001).
Get Citation
Copy Citation Text
Lianwei Liu, Shikui Dong, Qianrong Chen, Qianjin Zou, Hongjie Fan, Dongsheng Qu. Infrared radiation imaging calculation of aerial target based on CUDA parallel computing[J]. Infrared and Laser Engineering, 2020, 49(4): 0404003
Received: Dec. 12, 2019
Accepted: --
Published Online: May. 27, 2020
The Author Email: