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Методика пересчета спектров теплового излучения атмосферы различного спектрального разрешения для взаимного сопоставления измерений бортовых инфракрасных фурье-спектрометров. / Козлов, Д.А.; Тимофеев, Ю. М.; Поляков, А. В.; Козлов, И. А.; Делер, В.; Ортель, Д.; Шпенкух, Д.

в: СОВРЕМЕННЫЕ ПРОБЛЕМЫ ДИСТАНЦИОННОГО ЗОНДИРОВАНИЯ ЗЕМЛИ ИЗ КОСМОСА, Том 15, № 1, 2018, стр. 52-60.

Результаты исследований: Научные публикации в периодических изданияхстатьяРецензирование

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Author

Козлов, Д.А. ; Тимофеев, Ю. М. ; Поляков, А. В. ; Козлов, И. А. ; Делер, В. ; Ортель, Д. ; Шпенкух, Д. / Методика пересчета спектров теплового излучения атмосферы различного спектрального разрешения для взаимного сопоставления измерений бортовых инфракрасных фурье-спектрометров. в: СОВРЕМЕННЫЕ ПРОБЛЕМЫ ДИСТАНЦИОННОГО ЗОНДИРОВАНИЯ ЗЕМЛИ ИЗ КОСМОСА. 2018 ; Том 15, № 1. стр. 52-60.

BibTeX

@article{ea8eb79733dc422184f6ee7014a45df9,
title = "Методика пересчета спектров теплового излучения атмосферы различного спектрального разрешения для взаимного сопоставления измерений бортовых инфракрасных фурье-спектрометров",
abstract = "Recalculation algorithm for intercomparison of atmospheric spectra with different spectral resolution is presented. It is intended to compare measurements (level 1c data) of infrared Fourier transform spectrometers with different spectral resolution, apodizations and spectral grids. Firstly, the algorithm is dedicated to the routine intercalibration of IKFS-2 and IASI instruments (IASI is used as a reference). Secondly, it is planned to be used for climate investigations based on IKFS-2 (Meteor-M No. 2, 2014) and SI-1 (Meteor-28/29, 1977 and 1979) measurements. Used as an example of IKFS-2 to SI-1 spectral conversion, detailed step-by-step algorithm description is provided. To estimate recalculation error, line-by-line spectra for standard atmosphere convolved with IKFS-2 and SI-1 instrument line shape was used. The difference between modelled IKFS-2 spectra converted to SI-1 spectral data parameters and modelled SI-1spectra does not exceed radiometric noise level of the instruments. Finally, the issues of conversion error and radiometric noise in converted spectra are also discussed.",
keywords = "Apodization, IASI, IKFS-2, Infrared Fourier transform spectrometer, Instrument line shape, Intercomparison, SI-1, Spectral resolution",
author = "Д.А. Козлов and Тимофеев, {Ю. М.} and Поляков, {А. В.} and Козлов, {И. А.} and В. Делер and Д. Ортель and Д. Шпенкух",
year = "2018",
doi = "10.21046/2070-7401-2018-15-1-52-60",
language = "русский",
volume = "15",
pages = "52--60",
journal = "СОВРЕМЕННЫЕ ПРОБЛЕМЫ ДИСТАНЦИОННОГО ЗОНДИРОВАНИЯ ЗЕМЛИ ИЗ КОСМОСА",
issn = "2070-7401",
publisher = "Институт космических исследований Российской академии наук",
number = "1",

}

RIS

TY - JOUR

T1 - Методика пересчета спектров теплового излучения атмосферы различного спектрального разрешения для взаимного сопоставления измерений бортовых инфракрасных фурье-спектрометров

AU - Козлов, Д.А.

AU - Тимофеев, Ю. М.

AU - Поляков, А. В.

AU - Козлов, И. А.

AU - Делер, В.

AU - Ортель, Д.

AU - Шпенкух, Д.

PY - 2018

Y1 - 2018

N2 - Recalculation algorithm for intercomparison of atmospheric spectra with different spectral resolution is presented. It is intended to compare measurements (level 1c data) of infrared Fourier transform spectrometers with different spectral resolution, apodizations and spectral grids. Firstly, the algorithm is dedicated to the routine intercalibration of IKFS-2 and IASI instruments (IASI is used as a reference). Secondly, it is planned to be used for climate investigations based on IKFS-2 (Meteor-M No. 2, 2014) and SI-1 (Meteor-28/29, 1977 and 1979) measurements. Used as an example of IKFS-2 to SI-1 spectral conversion, detailed step-by-step algorithm description is provided. To estimate recalculation error, line-by-line spectra for standard atmosphere convolved with IKFS-2 and SI-1 instrument line shape was used. The difference between modelled IKFS-2 spectra converted to SI-1 spectral data parameters and modelled SI-1spectra does not exceed radiometric noise level of the instruments. Finally, the issues of conversion error and radiometric noise in converted spectra are also discussed.

AB - Recalculation algorithm for intercomparison of atmospheric spectra with different spectral resolution is presented. It is intended to compare measurements (level 1c data) of infrared Fourier transform spectrometers with different spectral resolution, apodizations and spectral grids. Firstly, the algorithm is dedicated to the routine intercalibration of IKFS-2 and IASI instruments (IASI is used as a reference). Secondly, it is planned to be used for climate investigations based on IKFS-2 (Meteor-M No. 2, 2014) and SI-1 (Meteor-28/29, 1977 and 1979) measurements. Used as an example of IKFS-2 to SI-1 spectral conversion, detailed step-by-step algorithm description is provided. To estimate recalculation error, line-by-line spectra for standard atmosphere convolved with IKFS-2 and SI-1 instrument line shape was used. The difference between modelled IKFS-2 spectra converted to SI-1 spectral data parameters and modelled SI-1spectra does not exceed radiometric noise level of the instruments. Finally, the issues of conversion error and radiometric noise in converted spectra are also discussed.

KW - Apodization

KW - IASI

KW - IKFS-2

KW - Infrared Fourier transform spectrometer

KW - Instrument line shape

KW - Intercomparison

KW - SI-1

KW - Spectral resolution

UR - http://www.scopus.com/inward/record.url?scp=85045845281&partnerID=8YFLogxK

U2 - 10.21046/2070-7401-2018-15-1-52-60

DO - 10.21046/2070-7401-2018-15-1-52-60

M3 - статья

VL - 15

SP - 52

EP - 60

JO - СОВРЕМЕННЫЕ ПРОБЛЕМЫ ДИСТАНЦИОННОГО ЗОНДИРОВАНИЯ ЗЕМЛИ ИЗ КОСМОСА

JF - СОВРЕМЕННЫЕ ПРОБЛЕМЫ ДИСТАНЦИОННОГО ЗОНДИРОВАНИЯ ЗЕМЛИ ИЗ КОСМОСА

SN - 2070-7401

IS - 1

ER -

ID: 18361815