DocumentCode :
3296692
Title :
Evaluation of non-uniformity correction precision for infrared focal panel arrays
Author :
Qu Hui-Ming ; Wang Wen-juan ; Chen Liang ; Ji Zhong-Jie ; Chen Qian
Author_Institution :
Sch. of Electron. Eng. & Optoelectron. Technol., Nanjing Univ. of Sci. & Technol., Nanjing, China
fYear :
2010
fDate :
24-27 Oct. 2010
Firstpage :
413
Lastpage :
417
Abstract :
According to the binary nonlinear non-uniformity theories model a novel non-uniformity correction method considering both the nonlinearity and surrounding temperature shift of infrared focal plane array response is proposed. The implementing procedure is described in detail. The correction quality of one point non-uniformity correction, multi-point non-uniformity correction and surrounding temperature compensation non-uniformity correction are discussed in the paper. Both qualitative evaluation and quantitative test comparison are performed among several correction technologies with a 320 ×240 uncooled infrared focal plane array. Their correction precision is evaluated by residual non uniformity quantificationally. The variation of correction precision with different target temperature is analyzed by residual non-uniformity trend chart. Experimental results show that their residual non-uniformity trend chart of one point non-uniformity correction and multi-point non uniformity correction are perfectly consistent with former theoretical analysis. The residual non-uniformity corrected by proposal algorithm is less than that of conventional correction methods and latest reported result. Real-time imaging indicates this new method improve the image quality clearly.
Keywords :
compensation; focal planes; infrared detectors; binary nonlinear non-uniformity theory; correction quality; image quality; infrared focal plane arrays; non-uniformity correction precision; real-time imaging; residual non-uniformity trend chart; temperature compensation non-uniformity correction; Binary nonlinear non-uniformity model; Correction Precision Evaluation; Infrared thermal imaging; Non-uniformity correction (NUC); Residual non-uniformity (RNU); Surrounding temperature compensation (STC);
fLanguage :
English
Publisher :
iet
Conference_Titel :
Optical Communications and Networks (ICOCN 2010), 9th International Conference on
Conference_Location :
Nanjing
Type :
conf
DOI :
10.1049/cp.2010.1239
Filename :
5778501
Link To Document :
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