Analysis and Design of the Automatic Flight Dynamics Operations For Geostationary Satellite Mission

Automation of the key flight dynamics operations for the geostationary orbit satellite mission is analyzed and designed. The automation includes satellite orbit determination, orbit prediction, event prediction, and fuel accounting. An object-oriented analysis and design methodology is used for desi...

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Main Authors: Byoung-Sun Lee, Yoola Hwang, Sangwook Park, Young-Ran Lee, Javier Santiago Noguero Galilea
Format: Article
Language:English
Published: The Korean Space Science Society 2009-06-01
Series:Journal of Astronomy and Space Sciences
Subjects:
Online Access:http://ocean.kisti.re.kr/downfile/volume/kosss/OJOOBS/2009/v26n2/OJOOBS_2009_v26n2_267.pdf
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author Byoung-Sun Lee
Yoola Hwang
Sangwook Park
Young-Ran Lee
Javier Santiago Noguero Galilea
author_facet Byoung-Sun Lee
Yoola Hwang
Sangwook Park
Young-Ran Lee
Javier Santiago Noguero Galilea
author_sort Byoung-Sun Lee
collection DOAJ
description Automation of the key flight dynamics operations for the geostationary orbit satellite mission is analyzed and designed. The automation includes satellite orbit determination, orbit prediction, event prediction, and fuel accounting. An object-oriented analysis and design methodology is used for design of the automation system. Automation scenarios are investigated first and then the scenarios are allocated to use cases. Sequences of the use cases are diagramed. Then software components and graphical user interfaces are designed for automation. The automation will be applied to the Communication, Ocean, and Meteorology Satellite (COMS) flight dynamics system for daily routine operations.
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spelling doaj.art-bc877b563b394ca795b18c3dafe559a42024-01-02T19:19:20ZengThe Korean Space Science SocietyJournal of Astronomy and Space Sciences2093-55872093-14092009-06-0126226727810.5140/JASS.2009.26.2.267Analysis and Design of the Automatic Flight Dynamics Operations For Geostationary Satellite MissionByoung-Sun Lee0Yoola Hwang1Sangwook Park2Young-Ran Lee3Javier Santiago Noguero Galilea4Satellite Control and Navigation Research Team, ETRI, Daejeon 305-700, KoreaSatellite Control and Navigation Research Team, ETRI, Daejeon 305-700, KoreaAerospace System Team, Satrec Initiative, Daejeon 305-811, KoreaAerospace System Team, Satrec Initiative, Daejeon 305-811, KoreaGMV Aerospace and Defense, S. A., E-28760 Madrid, SpainAutomation of the key flight dynamics operations for the geostationary orbit satellite mission is analyzed and designed. The automation includes satellite orbit determination, orbit prediction, event prediction, and fuel accounting. An object-oriented analysis and design methodology is used for design of the automation system. Automation scenarios are investigated first and then the scenarios are allocated to use cases. Sequences of the use cases are diagramed. Then software components and graphical user interfaces are designed for automation. The automation will be applied to the Communication, Ocean, and Meteorology Satellite (COMS) flight dynamics system for daily routine operations.http://ocean.kisti.re.kr/downfile/volume/kosss/OJOOBS/2009/v26n2/OJOOBS_2009_v26n2_267.pdfsatellite orbitflight dynamicsmission controlautomationCOMS
spellingShingle Byoung-Sun Lee
Yoola Hwang
Sangwook Park
Young-Ran Lee
Javier Santiago Noguero Galilea
Analysis and Design of the Automatic Flight Dynamics Operations For Geostationary Satellite Mission
Journal of Astronomy and Space Sciences
satellite orbit
flight dynamics
mission control
automation
COMS
title Analysis and Design of the Automatic Flight Dynamics Operations For Geostationary Satellite Mission
title_full Analysis and Design of the Automatic Flight Dynamics Operations For Geostationary Satellite Mission
title_fullStr Analysis and Design of the Automatic Flight Dynamics Operations For Geostationary Satellite Mission
title_full_unstemmed Analysis and Design of the Automatic Flight Dynamics Operations For Geostationary Satellite Mission
title_short Analysis and Design of the Automatic Flight Dynamics Operations For Geostationary Satellite Mission
title_sort analysis and design of the automatic flight dynamics operations for geostationary satellite mission
topic satellite orbit
flight dynamics
mission control
automation
COMS
url http://ocean.kisti.re.kr/downfile/volume/kosss/OJOOBS/2009/v26n2/OJOOBS_2009_v26n2_267.pdf
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