Nonuniformity Correction for Variable-Integration-Time Infrared Camera

A two-dimensional calibration technique is proposed to correct the spatial nonuniformity in infrared imaging systems adapting to different integration time and time-varying offset with one-time calibration. Differing from traditional calibration-based nonuniformity correction, this method calibrates...

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Main Authors: Nan Chen, Jiqing Zhang, Shengyou Zhong, Zhongshun Ji, Libin Yao
Format: Article
Language:English
Published: IEEE 2018-01-01
Series:IEEE Photonics Journal
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8536484/
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spelling doaj-e3d6da67c99847b0858e076aac314b8f2021-03-29T17:52:57ZengIEEEIEEE Photonics Journal1943-06552018-01-0110611110.1109/JPHOT.2018.28813938536484Nonuniformity Correction for Variable-Integration-Time Infrared CameraNan Chen0https://orcid.org/0000-0001-7938-8949Jiqing Zhang1Shengyou Zhong2Zhongshun Ji3Libin Yao4https://orcid.org/0000-0002-9053-0843Kunming Institute of Physics, Kunming, ChinaKunming Institute of Physics, Kunming, ChinaKunming Institute of Physics, Kunming, ChinaKunming Institute of Physics, Kunming, ChinaKunming Institute of Physics, Kunming, ChinaA two-dimensional calibration technique is proposed to correct the spatial nonuniformity in infrared imaging systems adapting to different integration time and time-varying offset with one-time calibration. Differing from traditional calibration-based nonuniformity correction, this method calibrates nonuniformity with two-dimensional information from two integration time besides different irradiance, which conquers drawbacks of traditional calibration-based correction. First, it eliminates the dependence on integration time in calibration process and dramatically suppresses fixed pattern noise by a large attenuation factor. In addition, time-varying offset is real-time canceled by the subtraction of images integrated with normal and short time. Correction error of two-point correction and the proposed method are analyzed in detail. In experiments with cooled infrared camera, the proposed method provides enhanced uniformity even for seven-time variation of integration time using same correction coefficients. Both quantitative and qualitative comparisons to two-point correction demonstrate its superiority. The one-time calibration and shutterless correction scheme avoids interruption of the normal operation for real scene, extending the application range in practical engineering for infrared imaging systems with low complexity of computation and hardware.https://ieeexplore.ieee.org/document/8536484/Infrared imagingnonuniformity correction
collection DOAJ
language English
format Article
sources DOAJ
author Nan Chen
Jiqing Zhang
Shengyou Zhong
Zhongshun Ji
Libin Yao
spellingShingle Nan Chen
Jiqing Zhang
Shengyou Zhong
Zhongshun Ji
Libin Yao
Nonuniformity Correction for Variable-Integration-Time Infrared Camera
IEEE Photonics Journal
Infrared imaging
nonuniformity correction
author_facet Nan Chen
Jiqing Zhang
Shengyou Zhong
Zhongshun Ji
Libin Yao
author_sort Nan Chen
title Nonuniformity Correction for Variable-Integration-Time Infrared Camera
title_short Nonuniformity Correction for Variable-Integration-Time Infrared Camera
title_full Nonuniformity Correction for Variable-Integration-Time Infrared Camera
title_fullStr Nonuniformity Correction for Variable-Integration-Time Infrared Camera
title_full_unstemmed Nonuniformity Correction for Variable-Integration-Time Infrared Camera
title_sort nonuniformity correction for variable-integration-time infrared camera
publisher IEEE
series IEEE Photonics Journal
issn 1943-0655
publishDate 2018-01-01
description A two-dimensional calibration technique is proposed to correct the spatial nonuniformity in infrared imaging systems adapting to different integration time and time-varying offset with one-time calibration. Differing from traditional calibration-based nonuniformity correction, this method calibrates nonuniformity with two-dimensional information from two integration time besides different irradiance, which conquers drawbacks of traditional calibration-based correction. First, it eliminates the dependence on integration time in calibration process and dramatically suppresses fixed pattern noise by a large attenuation factor. In addition, time-varying offset is real-time canceled by the subtraction of images integrated with normal and short time. Correction error of two-point correction and the proposed method are analyzed in detail. In experiments with cooled infrared camera, the proposed method provides enhanced uniformity even for seven-time variation of integration time using same correction coefficients. Both quantitative and qualitative comparisons to two-point correction demonstrate its superiority. The one-time calibration and shutterless correction scheme avoids interruption of the normal operation for real scene, extending the application range in practical engineering for infrared imaging systems with low complexity of computation and hardware.
topic Infrared imaging
nonuniformity correction
url https://ieeexplore.ieee.org/document/8536484/
work_keys_str_mv AT nanchen nonuniformitycorrectionforvariableintegrationtimeinfraredcamera
AT jiqingzhang nonuniformitycorrectionforvariableintegrationtimeinfraredcamera
AT shengyouzhong nonuniformitycorrectionforvariableintegrationtimeinfraredcamera
AT zhongshunji nonuniformitycorrectionforvariableintegrationtimeinfraredcamera
AT libinyao nonuniformitycorrectionforvariableintegrationtimeinfraredcamera
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