DOI QR코드

DOI QR Code

The Analysis of Mission Profile of the KC-100 UAV

KC-100 무인화 비행체 임무 형상 분석

  • Received : 2020.08.05
  • Accepted : 2020.09.29
  • Published : 2020.10.31

Abstract

The KC-100 has completed civil type certification with the Ministry of Land, Infrastructure, and Transport, and is currently under development as an unmanned aerial vehicle as part of the Ministry of Land, Infrastructure, and Transport. The Certification Technology of small Unmanned Airplane system (CTsUA system), which is an unmanned KC-100, is being developed to enable the installation of heavy-duty mission equipment and long-time flight missions. This study investigated the process and results of analyzing various parameters such as aircraft weight, airspeed, flight altitude, required horsepower, and fuel consumption at each stage to construct a mission profile based on the operational concept of the CTsUA system. To maintain a maximum take-off weight of 3,600 lbs (1,633 kg), the analysis determined that the weight of the application equipment for the unmanned system should be kept below 80 lbs (36 kg).

KC-100은 국토교통부로부터 민간형식인증이 완료되었고 현재 국토교통부 사업의 일환으로 무인비행기로 개조 개발 중이다. KC-100을 무인화 개조한 무인비행기 시스템(CTsUA System)은 고중량의 임무장비 탑재 및 장시간 비행 임무 수행 등이 가능하도록 개발하고 있다. 본 연구는 CTsUA System의 운용개념에 기반한 임무형상을 수행하기 위하여 각 단계별로 항공기 중량, 대기속도, 비행고도, 필요마력, 연료소모량 등 다양한 파라미터에 대하여 분석하는 과정과 결과에 대한 것이다. 최대이륙중량 3,600lbs(1,633kg)를 유지하기 위해서는 무인화시스템을 위한 적용 장비의 중량은 80lbs(36kg) 이하로 유지해야 하는 것으로 분석되었다.

Keywords

References

  1. D. W. Koh, "The Development and Performance of KC-100," KSAS 2017 Spring Conference, vol. 135, pp. 425-426, May 2017.
  2. J. Y. Lee, "D. W. Koh, "The Development and Performance of KC-100," KSAS 2017 Fall Conference, vol. 135, pp. 51-52, November 2017.
  3. Dae-wook Kim, Sung-soo Kang, Chan-jo Kim Bong-gil Wu, "Study on The Propulsion System Flight Test of KC-100 Small Airplane," Journal of Aerospace System Engineering, Vol.7, No.2, pp.15-22, June, 2013. https://doi.org/10.20910/JASE.2013.7.2.015
  4. Jinpyong Jung, Sungwoo Yoo, Baeckjun Yi, "Study on Aircraft HIRF Protection Design and Certification Process," Journal of Aerospace System Engineering, Vol.7, No.2, pp.47-54, June, 2013. https://doi.org/10.20910/JASE.2013.7.2.047
  5. Chanjo Kim, Jihan Seo, Wonjoong Lee, "Study on Flight Test Practice of the Small Civil Airplane Development for Pitot-Static System's Error Identification," Journal of Aerospace System Engineering, Vol.7, No.3, pp.33-38, September, 2013. https://doi.org/10.20910/JASE.2013.7.3.033
  6. C. S. Yoo, "Development of Certification Technology for Small Unmanned Aerial Vehicle Systems," The Research Development Plan, Korea Aerospace Research Institute, pp. 1-120, Feb. 2019.
  7. J. H. Lee, "The Analysis of Mission Scenario of the CTsUA," The Engineering Paper CTsUA-KARI-ED-001v1.0, Korea Aerospace Research Institute, pp. 1-21, Feb. 2020.
  8. C. S. Yoo, "The Operational Requirement Document of the CTsUA," The Research Paper CTsUA-KARI-DS-004v1.5 CTsUA ORD, Korea Aerospace Research Institute, pp. 1-22, Oct. 2019.
  9. "ENGINE MODEL SPECIFICATION - AIRCRAFT ENGINE MODEL TSIO-550-K," DOCUMENT CONTROL: DMS_ TSIO550K_2011-03-01, Teledyne Continental Motors, Inc.