DOI QR코드

DOI QR Code

SW Program Development of a Real-Time Flight Data Acquisition and Analysis System for EO/IR Pod

  • Kim, Songhyon (Department of Computer Science, Korea Air Force Academy) ;
  • Cho, Donghyurn (Department of Aerospace Engineering, Korea Air Force Academy) ;
  • Lee, Sanghyun (Department of Aerospace Engineering, Korea Air Force Academy) ;
  • Kim, Jongbum (Department of Aerospace Engineering, Korea Air Force Academy) ;
  • Choi, Taekyu (Mechanical Convergence Laboratory, LIG Nex1) ;
  • Lee, Seungha (Mechanical Convergence Laboratory, LIG Nex1)
  • 투고 : 2021.08.31
  • 심사 : 2021.10.29
  • 발행 : 2021.12.31

초록

To develop a high-resolution electro-optical/infrared (EO/IR) payload to be mounted on a high-speed and performance fighter aircraft in an external POD for acquiring daytime and nighttime image information on tactical targets, simulations, including flight environments and maneuvers, should be performed. Such simulations are pertinent to predicting the performance of several variables, such as aerodynamic force and inertia load acting on the payload. This paper describes the development of a flight data acquisition and analysis system based on flight simulation software (SW) for mission simulation of super-maneuverability fighter equipped with EO/IR payload. The effectiveness of the system is verified through comparison with actual flight data. The proposed flight data acquisition and analysis system based on FlightGear can be used as an M&S tool for system performance analysis in the development of the EO/IR payload.

키워드

과제정보

This study was conducted with the support of LIG Nex1 (Project name: super-maneuverability aircraft-mounted image acquisition system) with funding from the Government (Agency for Defense Development).

참고문헌

  1. Agency for Defense homepage, URL: https://www.add.re.kr/board?menuId=MENU02878&siteId=SITE00003
  2. S. Jang and J. Kim, "Survey of electro-optical infrared sensor for UAV," Current Industrial and Technological Trends in Aerospace, vol. 6, no. 1, pp. 124-134, 2008.
  3. D. Kim and C. Lee, "The study on development of defense M&S system," Korea Information Processing Society Review, vol. 15, no. 6, pp. 14-24, 2008.
  4. G. Woo, J. Kim, K. Cho and D. Lee, "A study of the dynamic characteristics of airship through the flight test," Journal of the Korean Society for Aeronautical & Space Sciences, vol. 32, no. 5, pp. 97-103, 2004. https://doi.org/10.5139/JKSAS.2004.32.5.097
  5. C. Lee, Y. Park and H. Choi, "Study of flight simulation using real-time aerodynamic model," Journal of Aerospace System Engineering, vol. 9, no. 4, pp. 49-54, 2015. https://doi.org/10.20910/JASE.2015.9.4.049
  6. B. Stevens, F. Lewis and E. Johnson, Aircraft Control and Simulation: Dynamics, Controls Design, and Autonomous Systems. John Wiley & Sons, 2015.
  7. M. Napolitano, Aircraft Dynamics from Modeling to Simulation, John Wiley & Sons, 2012.
  8. A. R. Perry, "The flightgear flight simulator," Proc. of the USENIX Annual Technical Conf., vol. 686, 2004.
  9. L. Wang, F. Zhang, W. Gao and L. Yi, "Data acquisition and processing based on flightgear simulator software," Electronic Design Engineering, 2011.
  10. J. Kim, S. Cho and K. Choi, "Development of control law debugging, data plot and simulation(flight replay, plot, simulation) tool," Proc. of the Korean Society for Aeronautical & Space Sciences fall conf., 2014.
  11. G. Ricardo, C. Daniel, P. Luis and O. Eugenio, "Using flight simulation environments with agent-controlled UAVs," Autonomous Robot Systems and Competitions: Proc. of the 8th conf., 2008.
  12. J. Berndt and A. Marco, "Progress on and usage of the open source flight dynamics model software library, JSBSim," AIAA Modeling and Simulation Technologies Conf., 2009.
  13. S. Jang, Study of intelligent pilot model based on basic fighter maneuvering for air combat simulation, Ph.D. Dissertation, Inha University, 2012.