DOI QR코드

DOI QR Code

중·소형 지구관측위성의 개념설계 도구를 위한 GUI 개발

GUI Development for Conceptual Design Tool of Mid-to-Small Earth Observation Satellite

  • Park, Kiyun (Dept. of Aerospace & Mechanical Engineering, Graduate School, Korea Aerospace University) ;
  • Kim, Hong-Rae (Dept. of Aerospace & Mechanical Engineering, Graduate School, Korea Aerospace University) ;
  • Chang, Young-Keun (Dept. of Aerospace & Mechanical Engineering, Graduate School, Korea Aerospace University)
  • 투고 : 2015.04.20
  • 심사 : 2015.08.25
  • 발행 : 2015.09.01

초록

중 소형위성은 적은 비용으로 단기간에 개발 및 운용할 수 있어야 한다. 하지만 개발 초기 단계에서 임무를 설계하고 분석하는 과정과 위성시스템의 개념설계를 수행하는 과정을 반복 수행하면서 사용자의 요구사항을 맞추고, 개발방향을 정립하는 과정에서 많은 시간과 비용이 소요하게 된다. 본 연구에서는 이러한 초기 단계에서 소요되는 시간과 비용을 줄이기 위해 GUI(Graphical User Interface) 기반의 소프트웨어인 SCDT(Spacecraft Cenceptual Design Tool)를 개발하였다. GUI 기반의 소프트웨어는 입력된 값들의 수정이 용이하고 다양한 방법으로 사용자에게 결과를 보여줄 수 있다. 본 논문에서는 MATLAB GUI 기반의 SCDT를 개발한 과정 및 개발된 SCDT GUI를 소개한다.

The emergence of mid-to-small satellites has created a need for rapid development with a relatively low cost. However, the development of mid-to-small satellites requires considerable time and cost in early phase, in particular, during the development of mission and system requirements through iterations of conceptual design and mission design. In this research, Spacecraft Conceptual Design Tool(SCDT) which is based on Graphical User Interface(GUI) was developed to reduce the time and cost for early phase development. Furthermore, GUI-based software can make the input values to be editable easily and show users design results in various way. In this paper, the development results of MATLAB GUI-based SCDT are introduced.

키워드

참고문헌

  1. M. Wilke, O. Quirmbach, H. Negele, E. Fricke, and E. Igenbergs, "3 MUSSAT-A Tool for Model‐Based System Engineering of Commercial Satellite Systems", INCOSE International Symposium. Vol. 9. No. 1., 1999.
  2. Useong Park, Joongsup Yun, Keeyoung Choi, Chang-Kyung Ryoo, Heesub Kim, and Dae-won Chung, "A Survey on Domestic and Foreign Cases of Satellite Conceptual Design Tool", KSAS Fall Conference, 2007, pp. 1505-1508.
  3. Todd Mosher, Mark Barrera, Dave Bearden, and Norman Lao, "Integration of Small Satellite Cost and Design Models for Improved Conceptual Design-to-Cost", Aerospace Conference, IEEE. Vol. 3., 1998.
  4. Ki-Lyong Hwang, Bo-Ra Lee, Su-Jeoung Kim, Sung-Hwan Ko, Soon-Kyoung Kwon, Mi-Hyun Lee, and Young-Keun Chang, "Development of SEDT(System Enginnering Design Tool) for Small Satellite Conceptual Design", Journal of KSAS, 2005, pp. 93-103.
  5. Braun Robert David, "Collaborative Optimization: an Architecture for Large-Scale Distributed Design", PhD Thesis, Stanford University, 1996.
  6. Deb Kalyanmoy, Amrit Pratap, and T. Meyarivan, "A Fast and Elitist Multiobjective Genetic Algorithm: NSGA-II", Evolutionary Computation, IEEE Transactions on 6.2, 2002, pp. 182-197. https://doi.org/10.1109/4235.996017
  7. Paul T. Boggs and Jon W. Tolle, "Sequential Quadratic Programming", Acta Numerica 4, 1995, pp. 1-51. https://doi.org/10.1017/S0962492900002518
  8. Barry W. Boehm, "A Spiral Model of Software Development and Enhancement", Computer 21.5, 1988, pp. 61-72. https://doi.org/10.1109/2.59
  9. Heung Seop Lee, Hong-Rae Kim, and Young-Keun Chang, "Multidisciplinary Optimization of Earth Observation Satellite Conceptual Design using Collaborative Optimization", KSAS Fall Conference, 2014, pp. 1483-1486.
  10. Francisco M. Gonzalez-Longatt, "Model of Photovoltaic Module in MatlabTM", II CIBELEC, 2005, pp. 1-5.
  11. Elizabeth W. Hayes, "Computation of Average Revisit Time for Earth Observing Satellites", 26th AIAA Aerospace Sciences Meeting. Vol. 1, 1988.
  12. Hongrae Kim and Young-Keun Chang, "Algorithm Development for System Response Time Analysis of Earth Observation Satellites", KSAS Fall Conference, 2014, pp. 585-590.
  13. James R. Wertz, David F. Everett, and Jeffery J. Puschell, "Space Mission Engineering: The New SMAD", Microcosm Press, 2011, pp. 465-481.