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표적 수정이 가능한 사용자 개입 통합 관리 모의 시스템 개발

Development of the integrated management simulation system for the target correction

  • 투고 : 2017.02.24
  • 심사 : 2017.06.28
  • 발행 : 2017.07.01

초록

탐색기의 센서 영상을 이용하여 최종 표적에 대한 선정을 수동 또는 자동으로 할 수 있는 표적 관리 모의 시스템을 개발하였다. 모의 시스템은 비행체 시스템과 지상 시스템으로 구성하였다. 비행체 시스템은 비행체의 운동역학과 센서 영상을 모의하고 지상 시스템은 표적 템플릿 모의와 지상 제어기를 모의를 수행한다. 비행체의 운동역학은 의사 6자유도를 기반으로 비례항법유도기법을 사용한다. 탐색기의 센서 영상은 알려진 적외선 영상 렌더링 기법을 이용하여 직접 개발하였으며 상용 프로그램과 비교하여 검증하였다. 지상제어기는 사용자 편의를 위해 임무에 관련된 정보를 가능한 많이 전시할 수 있는 사용자 인터페이스로 구성하였다. 최종적으로 표적 격추 임무 모의를 통해 요구하는 성능에 만족함을 확인하였다.

We designed a target management integration system that enables us to select the final target manually or automatically from seeker's sensor image. The integrated system was developed separately for the air vehicle system and the ground system. The air vehicle system simulates the motion dynamics and the sensor image of the air vehicle, and the ground system is composed of the target template image module and the ground control center module. The flight maneuver of the air vehicle is based on pseudo 6-degree of freedom motion equation and the proportional navigation guidance. The sensor image module was developed using the known infrared(IR) image rendering method, and was verified by comparing the rendered image to that of a commercial software. The ground control center module includes an user interface that can display as much information to meet user needs. Finally, we verified the integrated system with simulated impact target mission of the air vehicle, by confirming the final target change and the shot down result of the user's intervention.

키워드

참고문헌

  1. Ilg, M. D., Guidance, Navigation, and Control for Munitions, Ph.D. Thesis, Drexel Univercity, 2008.
  2. Fresconi, F., Celmins, I., and Silon, S. I., Theory, Guidance, and Flight Control for HIgh Maneuverability Projectiles, ARL-TR-6767, Army Research Laboratory, U.S., 2014.
  3. Fresconi, F., Guidance and Control of a Fin-Stabilized Projectile Based on Flight Dynamics with Reduced Sensor and Actuator Requirements, ARL-TR-5458, Army Research Laboratory, U.S., 2011.
  4. Park, W. S., Ryoo, C. K., Kim, Y. H., and Kim, J. J., "A Guidance Law to Maintain Ballistic Trajectory for Smart Munitions," Journal of The Korean Society for Aeronautical and Space Sciences, Vol. 39, No. 9, 2011, pp. 839-847. https://doi.org/10.5139/JKSAS.2011.39.9.839
  5. Jang, S. A., Ryoo, C. K., Choi, K. Y., and Tahk, M. J., "Guidance Loop Design for Portable Tactical Missiles with Strapdown Seeker," KSAS Spring Conference 2008, 2008, pp. 319-322.
  6. Strohm, L. S., A Terminal Guidance Model for Smart Projectiles Employing a Semi-Active Laser Seeker, ARL-TR-5654, Army Research Laboratory, U.S., 2011.
  7. Maurer, D. E., Rogala, E. W., Bankman, I. N., Boone, B. G., Vogel, K. K., and Parris, C. "A Low Cost Gun Launched Seeker Concept Design for Naval Fire Support," Johns Hopkins APL Technical Digest, Vol. 22, No. 4, 2001, pp. 634-647.
  8. Hong, J. H., Park, K. K., Park, S. S., Ryoo, C. K., Cho, H. J., and Cho, Y. K., "Look-Angle-Control Homing Loop Design with a Strapdown Seeker and Single Gyroscope," Journal of The Korean Society for Aeronautical and Space Sciences, Vol. 44, No. 4, 2016, pp. 324-332. https://doi.org/10.5139/JKSAS.2016.44.4.324
  9. Felzenszwalb, P. F., and Huttenlocher, D. P., "Efficient Graph-Based Image Segmentation," International Journal of Computer Vision, Vol. 59, No. 2, 2004, pp. 167-181. https://doi.org/10.1023/B:VISI.0000022288.19776.77
  10. Smith, J. R., and Chang, S. F., "Transform Features for Texture Classification and Discrimination in Large Image Database," Proceedings of 1st International Conference on Image Processing, 1994, pp. 407-411.
  11. Klein, L. A., Millimeter-Wave and Infrared Multisensor Design and Signal Processing, Artech House, Norwood, 1997.
  12. Dereniak, E. L., and Boreman, G. D., Infrared Detectors and Systems, John Wiley & Sons, New York, 1996.
  13. Spiro, I. J., and Schlessinger, M., Infrared Technology Fundamentals, Marcel Dekker, New York, 1989.