SEPERATION OF IKONOS SENSOR’S ELECTRONIC NOISE FROM ATMOSPHERIC INDUCED EFFECTS

The quality of satellite images has always been of particular importance in remote sensing. Signals received from satellite sensors include some signals other than those of target signal that may be classified totally as the atmospheric effect and the sensor induced noise. Separating non-target sign...

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Main Authors: M. R. Mobashery, M. Dastfard
Format: Article
Language:English
Published: Copernicus Publications 2013-09-01
Series:The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences
Online Access:http://www.int-arch-photogramm-remote-sens-spatial-inf-sci.net/XL-1-W3/117/2013/isprsarchives-XL-1-W3-117-2013.pdf
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spelling doaj-1a427087f1984020b995c19f6066652e2020-11-25T00:27:22ZengCopernicus PublicationsThe International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences1682-17502194-90342013-09-01XL-1/W311712110.5194/isprsarchives-XL-1-W3-117-2013SEPERATION OF IKONOS SENSOR’S ELECTRONIC NOISE FROM ATMOSPHERIC INDUCED EFFECTSM. R. Mobashery0M. Dastfard1Department of Remote Sensing Engineering, Industrial University of Khajeh Nasir, IranTelecommunication Engineering at Khavaran Institute, IranThe quality of satellite images has always been of particular importance in remote sensing. Signals received from satellite sensors include some signals other than those of target signal that may be classified totally as the atmospheric effect and the sensor induced noise. Separating non-target signals and attempting in removing them from images is essential. One method for measuring and removing non-target signals is that of atmospheric correction by <i>Dark Object Subtraction</i> (DOS). This method is based on the sensor’s output for the targets that should have almost zero reflectance in a given band. Next, the obtained value will be deducted from the remaining pixels values; regardless of the type of the sensors. Each <i>Charge-Coupled Device</i> (CCD) has its own noise behavior; therefore, the amount deducted values from each pixel can be different for each CCD unit and type. Among the various noises of the CCD and their related electronic circuits, dark current noise, non-uniform pixels noise and read noise were selected to be studied in this paper. The data were obtained from multispectral sensor images of IKONOS. This sensor can provide images in two forms of <i>Panchromatic</i> (PAN) and <i>Multispectral</i> (MS). The results of this study showed that the amount of dark object pixels and the total amount of CCD noises in each band are different. Separation of the noises introduced in this paper from the amount of dark object pixel values can result in an upgraded method for image atmosphere corrections.http://www.int-arch-photogramm-remote-sens-spatial-inf-sci.net/XL-1-W3/117/2013/isprsarchives-XL-1-W3-117-2013.pdf
collection DOAJ
language English
format Article
sources DOAJ
author M. R. Mobashery
M. Dastfard
spellingShingle M. R. Mobashery
M. Dastfard
SEPERATION OF IKONOS SENSOR’S ELECTRONIC NOISE FROM ATMOSPHERIC INDUCED EFFECTS
The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences
author_facet M. R. Mobashery
M. Dastfard
author_sort M. R. Mobashery
title SEPERATION OF IKONOS SENSOR’S ELECTRONIC NOISE FROM ATMOSPHERIC INDUCED EFFECTS
title_short SEPERATION OF IKONOS SENSOR’S ELECTRONIC NOISE FROM ATMOSPHERIC INDUCED EFFECTS
title_full SEPERATION OF IKONOS SENSOR’S ELECTRONIC NOISE FROM ATMOSPHERIC INDUCED EFFECTS
title_fullStr SEPERATION OF IKONOS SENSOR’S ELECTRONIC NOISE FROM ATMOSPHERIC INDUCED EFFECTS
title_full_unstemmed SEPERATION OF IKONOS SENSOR’S ELECTRONIC NOISE FROM ATMOSPHERIC INDUCED EFFECTS
title_sort seperation of ikonos sensor’s electronic noise from atmospheric induced effects
publisher Copernicus Publications
series The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences
issn 1682-1750
2194-9034
publishDate 2013-09-01
description The quality of satellite images has always been of particular importance in remote sensing. Signals received from satellite sensors include some signals other than those of target signal that may be classified totally as the atmospheric effect and the sensor induced noise. Separating non-target signals and attempting in removing them from images is essential. One method for measuring and removing non-target signals is that of atmospheric correction by <i>Dark Object Subtraction</i> (DOS). This method is based on the sensor’s output for the targets that should have almost zero reflectance in a given band. Next, the obtained value will be deducted from the remaining pixels values; regardless of the type of the sensors. Each <i>Charge-Coupled Device</i> (CCD) has its own noise behavior; therefore, the amount deducted values from each pixel can be different for each CCD unit and type. Among the various noises of the CCD and their related electronic circuits, dark current noise, non-uniform pixels noise and read noise were selected to be studied in this paper. The data were obtained from multispectral sensor images of IKONOS. This sensor can provide images in two forms of <i>Panchromatic</i> (PAN) and <i>Multispectral</i> (MS). The results of this study showed that the amount of dark object pixels and the total amount of CCD noises in each band are different. Separation of the noises introduced in this paper from the amount of dark object pixel values can result in an upgraded method for image atmosphere corrections.
url http://www.int-arch-photogramm-remote-sens-spatial-inf-sci.net/XL-1-W3/117/2013/isprsarchives-XL-1-W3-117-2013.pdf
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