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A Digital Sensor Simulator of the Pushbroom Offner Hyperspectral Imaging Spectrometer

Sensor simulators can be used in forecasting the imaging quality of a new hyperspectral imaging spectrometer, and generating simulated data for the development and validation of the data processing algorithms. This paper presents a novel digital sensor simulator for the pushbroom Offner hyperspectra...

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Autores principales: Tao, Dongxing, Jia, Guorui, Yuan, Yan, Zhao, Huijie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4299089/
https://www.ncbi.nlm.nih.gov/pubmed/25615727
http://dx.doi.org/10.3390/s141223822
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author Tao, Dongxing
Jia, Guorui
Yuan, Yan
Zhao, Huijie
author_facet Tao, Dongxing
Jia, Guorui
Yuan, Yan
Zhao, Huijie
author_sort Tao, Dongxing
collection PubMed
description Sensor simulators can be used in forecasting the imaging quality of a new hyperspectral imaging spectrometer, and generating simulated data for the development and validation of the data processing algorithms. This paper presents a novel digital sensor simulator for the pushbroom Offner hyperspectral imaging spectrometer, which is widely used in the hyperspectral remote sensing. Based on the imaging process, the sensor simulator consists of a spatial response module, a spectral response module, and a radiometric response module. In order to enhance the simulation accuracy, spatial interpolation-resampling, which is implemented before the spatial degradation, is developed to compromise the direction error and the extra aliasing effect. Instead of using the spectral response function (SRF), the dispersive imaging characteristics of the Offner convex grating optical system is accurately modeled by its configuration parameters. The non-uniformity characteristics, such as keystone and smile effects, are simulated in the corresponding modules. In this work, the spatial, spectral and radiometric calibration processes are simulated to provide the parameters of modulation transfer function (MTF), SRF and radiometric calibration parameters of the sensor simulator. Some uncertainty factors (the stability, band width of the monochromator for the spectral calibration, and the integrating sphere uncertainty for the radiometric calibration) are considered in the simulation of the calibration process. With the calibration parameters, several experiments were designed to validate the spatial, spectral and radiometric response of the sensor simulator, respectively. The experiment results indicate that the sensor simulator is valid.
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spelling pubmed-42990892015-01-26 A Digital Sensor Simulator of the Pushbroom Offner Hyperspectral Imaging Spectrometer Tao, Dongxing Jia, Guorui Yuan, Yan Zhao, Huijie Sensors (Basel) Article Sensor simulators can be used in forecasting the imaging quality of a new hyperspectral imaging spectrometer, and generating simulated data for the development and validation of the data processing algorithms. This paper presents a novel digital sensor simulator for the pushbroom Offner hyperspectral imaging spectrometer, which is widely used in the hyperspectral remote sensing. Based on the imaging process, the sensor simulator consists of a spatial response module, a spectral response module, and a radiometric response module. In order to enhance the simulation accuracy, spatial interpolation-resampling, which is implemented before the spatial degradation, is developed to compromise the direction error and the extra aliasing effect. Instead of using the spectral response function (SRF), the dispersive imaging characteristics of the Offner convex grating optical system is accurately modeled by its configuration parameters. The non-uniformity characteristics, such as keystone and smile effects, are simulated in the corresponding modules. In this work, the spatial, spectral and radiometric calibration processes are simulated to provide the parameters of modulation transfer function (MTF), SRF and radiometric calibration parameters of the sensor simulator. Some uncertainty factors (the stability, band width of the monochromator for the spectral calibration, and the integrating sphere uncertainty for the radiometric calibration) are considered in the simulation of the calibration process. With the calibration parameters, several experiments were designed to validate the spatial, spectral and radiometric response of the sensor simulator, respectively. The experiment results indicate that the sensor simulator is valid. MDPI 2014-12-11 /pmc/articles/PMC4299089/ /pubmed/25615727 http://dx.doi.org/10.3390/s141223822 Text en © 2014 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Tao, Dongxing
Jia, Guorui
Yuan, Yan
Zhao, Huijie
A Digital Sensor Simulator of the Pushbroom Offner Hyperspectral Imaging Spectrometer
title A Digital Sensor Simulator of the Pushbroom Offner Hyperspectral Imaging Spectrometer
title_full A Digital Sensor Simulator of the Pushbroom Offner Hyperspectral Imaging Spectrometer
title_fullStr A Digital Sensor Simulator of the Pushbroom Offner Hyperspectral Imaging Spectrometer
title_full_unstemmed A Digital Sensor Simulator of the Pushbroom Offner Hyperspectral Imaging Spectrometer
title_short A Digital Sensor Simulator of the Pushbroom Offner Hyperspectral Imaging Spectrometer
title_sort digital sensor simulator of the pushbroom offner hyperspectral imaging spectrometer
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4299089/
https://www.ncbi.nlm.nih.gov/pubmed/25615727
http://dx.doi.org/10.3390/s141223822
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