Integrated Ray Tracing Model for End-to-end Performance Verification of Amon-Ra Instrument

The international EARTHSHINE mission is to measure 1% anomaly of the Earth global albedo and total solar irradiance using Amon-Ra instrument around Lagrange point 1. We developed a new ray tracing based integrated end-to-end simulation tool that overcomes the shortcomings of the existing end-to-end...

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Main Authors: Jae-Min Lee, Won Hyun Park, Sun-Jeong Ham, Hyun-Su Yi, Jee Yeon Yoon, Sug-Whan Kim, Ki-Hyuk Choi, Zeen Chul Kim, Mike Lockwood
Format: Article
Language:English
Published: Korean Space Science Society (KSSS) 2007-03-01
Series:Journal of Astronomy and Space Sciences
Subjects:
Online Access:http://ocean.kisti.re.kr/downfile/volume/kosss/OJOOBS/2007/v24n1/OJOOBS_2007_v24n1_69.pdf
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spelling doaj-486c98c00cc1433e9f45ba9b4b535a892020-11-24T22:06:33ZengKorean Space Science Society (KSSS)Journal of Astronomy and Space Sciences2093-55872093-14092007-03-01241697810.5140/JASS.2007.24.1.069Integrated Ray Tracing Model for End-to-end Performance Verification of Amon-Ra InstrumentJae-Min Lee0Won Hyun Park1Sun-Jeong Ham2Hyun-Su Yi3Jee Yeon Yoon4Sug-Whan Kim5Ki-Hyuk Choi6Zeen Chul Kim7Mike Lockwood8Dept. of Astronomy, Yonsei University, Seoul 120-749, KoreaDept. of Astronomy, Yonsei University, Seoul 120-749, KoreaDept. of Astronomy, Yonsei University, Seoul 120-749, KoreaDept. of Astronomy, Yonsei University, Seoul 120-749, KoreaDept. of Astronomy, Yonsei University, Seoul 120-749, KoreaDept. of Astronomy, Yonsei University, Seoul 120-749, KoreaKorea aerospace Research InstituteKorea aerospace Research InstituteRutherford Appleton Laboratory, UKThe international EARTHSHINE mission is to measure 1% anomaly of the Earth global albedo and total solar irradiance using Amon-Ra instrument around Lagrange point 1. We developed a new ray tracing based integrated end-to-end simulation tool that overcomes the shortcomings of the existing end-to-end performance simulation techniques. We then studied the in-orbit radiometric performance of the breadboard Amon-Ra visible channel optical system. The TSI variation and the Earth albedo anomaly, reported elsewhere, were used as the key input variables in the simulation. The output flux at the instrument focal plane confirms that the integrated ray tracing based end-to-end science simulation delivers the correct level of incident power to the Amon-Ra instrument well within the required measurement error budget of better than ±0.28%. Using the global angular distribution model (ADM), the incident flux is then used to estimate the Earth global albedo and the TSI variation, confirming the validity of the primary science cases at the L1 halo orbit. These results imply that the integrated end-to-end ray tracing technique, reported here, can serve as an effective and powerful building block of the on-line science analysis tool in support of the international EARTHSHINE mission currently being developed.http://ocean.kisti.re.kr/downfile/volume/kosss/OJOOBS/2007/v24n1/OJOOBS_2007_v24n1_69.pdfend-to-end simulationAmon-Ra instrumentray-tracing techniqueearth global albedototal solar irradiance
collection DOAJ
language English
format Article
sources DOAJ
author Jae-Min Lee
Won Hyun Park
Sun-Jeong Ham
Hyun-Su Yi
Jee Yeon Yoon
Sug-Whan Kim
Ki-Hyuk Choi
Zeen Chul Kim
Mike Lockwood
spellingShingle Jae-Min Lee
Won Hyun Park
Sun-Jeong Ham
Hyun-Su Yi
Jee Yeon Yoon
Sug-Whan Kim
Ki-Hyuk Choi
Zeen Chul Kim
Mike Lockwood
Integrated Ray Tracing Model for End-to-end Performance Verification of Amon-Ra Instrument
Journal of Astronomy and Space Sciences
end-to-end simulation
Amon-Ra instrument
ray-tracing technique
earth global albedo
total solar irradiance
author_facet Jae-Min Lee
Won Hyun Park
Sun-Jeong Ham
Hyun-Su Yi
Jee Yeon Yoon
Sug-Whan Kim
Ki-Hyuk Choi
Zeen Chul Kim
Mike Lockwood
author_sort Jae-Min Lee
title Integrated Ray Tracing Model for End-to-end Performance Verification of Amon-Ra Instrument
title_short Integrated Ray Tracing Model for End-to-end Performance Verification of Amon-Ra Instrument
title_full Integrated Ray Tracing Model for End-to-end Performance Verification of Amon-Ra Instrument
title_fullStr Integrated Ray Tracing Model for End-to-end Performance Verification of Amon-Ra Instrument
title_full_unstemmed Integrated Ray Tracing Model for End-to-end Performance Verification of Amon-Ra Instrument
title_sort integrated ray tracing model for end-to-end performance verification of amon-ra instrument
publisher Korean Space Science Society (KSSS)
series Journal of Astronomy and Space Sciences
issn 2093-5587
2093-1409
publishDate 2007-03-01
description The international EARTHSHINE mission is to measure 1% anomaly of the Earth global albedo and total solar irradiance using Amon-Ra instrument around Lagrange point 1. We developed a new ray tracing based integrated end-to-end simulation tool that overcomes the shortcomings of the existing end-to-end performance simulation techniques. We then studied the in-orbit radiometric performance of the breadboard Amon-Ra visible channel optical system. The TSI variation and the Earth albedo anomaly, reported elsewhere, were used as the key input variables in the simulation. The output flux at the instrument focal plane confirms that the integrated ray tracing based end-to-end science simulation delivers the correct level of incident power to the Amon-Ra instrument well within the required measurement error budget of better than ±0.28%. Using the global angular distribution model (ADM), the incident flux is then used to estimate the Earth global albedo and the TSI variation, confirming the validity of the primary science cases at the L1 halo orbit. These results imply that the integrated end-to-end ray tracing technique, reported here, can serve as an effective and powerful building block of the on-line science analysis tool in support of the international EARTHSHINE mission currently being developed.
topic end-to-end simulation
Amon-Ra instrument
ray-tracing technique
earth global albedo
total solar irradiance
url http://ocean.kisti.re.kr/downfile/volume/kosss/OJOOBS/2007/v24n1/OJOOBS_2007_v24n1_69.pdf
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