A Median-Ratio Scene-Based Non-Uniformity Correction Method for Airborne Infrared Point Target Detection System
Infrared detectors suffer from severe non-uniform noise which highly reduces image resolution and point target signal-to-noise ratio. This is the restriction for airborne point target detection systems in reaching the background limit. The existing methods are either not accurate enough, or too comp...
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doaj-d5a477925a914abe94ea4817f73b499a2020-11-25T02:36:39ZengMDPI AGSensors1424-82202020-06-01203273327310.3390/s20113273A Median-Ratio Scene-Based Non-Uniformity Correction Method for Airborne Infrared Point Target Detection SystemShuai Ding0Dejiang Wang1Tao Zhang2Key Laboratory of Airborne Optical Imaging and Measurement, Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences, Changchun 130033, ChinaKey Laboratory of Airborne Optical Imaging and Measurement, Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences, Changchun 130033, ChinaUniversity of Chinese Academy of Sciences, Beijing 100084, ChinaInfrared detectors suffer from severe non-uniform noise which highly reduces image resolution and point target signal-to-noise ratio. This is the restriction for airborne point target detection systems in reaching the background limit. The existing methods are either not accurate enough, or too complex to be applied to engineering. To improve the precision and reduce the algorithm complexity of scene-based Non-Uniformity Correction (NUC) for an airborne point target detection system, a Median-Ratio Scene-based NUC (MRSBNUC) method is proposed. The method is based on the assumption that the median value of neighboring pixels is approximately constant. The NUC coefficients are calculated recursively by selecting the median ratio of adjacent pixels. Several experiments were designed and conducted. For both the clear sky scene and scene with clouds, the non-uniformity is effectively reduced. Furthermore, targets were detected in outfield experiments. For Target 1 48.36 km away and Target 2 50.53 km away, employing MRSBNUC the SNR of the target increased 2.09 and 1.73 times respectively compared to Two-Point NUC. It was concluded that the MRSBNUC method can reduce the non-uniformity of the detector effectively which leads to a longer detection distance and fewer false alarms of the airborne point target detection system.https://www.mdpi.com/1424-8220/20/11/3273infrared detectorsmall target detectionnon-uniformitymedian-ratio scene-based NUC |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Shuai Ding Dejiang Wang Tao Zhang |
spellingShingle |
Shuai Ding Dejiang Wang Tao Zhang A Median-Ratio Scene-Based Non-Uniformity Correction Method for Airborne Infrared Point Target Detection System Sensors infrared detector small target detection non-uniformity median-ratio scene-based NUC |
author_facet |
Shuai Ding Dejiang Wang Tao Zhang |
author_sort |
Shuai Ding |
title |
A Median-Ratio Scene-Based Non-Uniformity Correction Method for Airborne Infrared Point Target Detection System |
title_short |
A Median-Ratio Scene-Based Non-Uniformity Correction Method for Airborne Infrared Point Target Detection System |
title_full |
A Median-Ratio Scene-Based Non-Uniformity Correction Method for Airborne Infrared Point Target Detection System |
title_fullStr |
A Median-Ratio Scene-Based Non-Uniformity Correction Method for Airborne Infrared Point Target Detection System |
title_full_unstemmed |
A Median-Ratio Scene-Based Non-Uniformity Correction Method for Airborne Infrared Point Target Detection System |
title_sort |
median-ratio scene-based non-uniformity correction method for airborne infrared point target detection system |
publisher |
MDPI AG |
series |
Sensors |
issn |
1424-8220 |
publishDate |
2020-06-01 |
description |
Infrared detectors suffer from severe non-uniform noise which highly reduces image resolution and point target signal-to-noise ratio. This is the restriction for airborne point target detection systems in reaching the background limit. The existing methods are either not accurate enough, or too complex to be applied to engineering. To improve the precision and reduce the algorithm complexity of scene-based Non-Uniformity Correction (NUC) for an airborne point target detection system, a Median-Ratio Scene-based NUC (MRSBNUC) method is proposed. The method is based on the assumption that the median value of neighboring pixels is approximately constant. The NUC coefficients are calculated recursively by selecting the median ratio of adjacent pixels. Several experiments were designed and conducted. For both the clear sky scene and scene with clouds, the non-uniformity is effectively reduced. Furthermore, targets were detected in outfield experiments. For Target 1 48.36 km away and Target 2 50.53 km away, employing MRSBNUC the SNR of the target increased 2.09 and 1.73 times respectively compared to Two-Point NUC. It was concluded that the MRSBNUC method can reduce the non-uniformity of the detector effectively which leads to a longer detection distance and fewer false alarms of the airborne point target detection system. |
topic |
infrared detector small target detection non-uniformity median-ratio scene-based NUC |
url |
https://www.mdpi.com/1424-8220/20/11/3273 |
work_keys_str_mv |
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