DOI QR코드

DOI QR Code

Application of STANAG-4586 Ed. 4 based Standardization for Up-to-Dated Interoperability of Military UAV System

  • 투고 : 2019.05.14
  • 심사 : 2019.06.07
  • 발행 : 2019.06.28

초록

With the development of various types of military Unmanned Aircraft(UA)s, the need for interworking and integration between different platforms gradually increased. In order to ensure interoperability at each military UA System(UAS) level, North Atlantic Treaty Organization(NATO) has established STANAG-4586 "Standard Interfaces of Unmanned Aircraft(UA) Control Systems(UCS) for NATO UA Interoperability-Interface Control Document". This paper looks at the basic design structure of STANAG-4586 and the changes on Edition 4 to enhance joint operational capability through reflecting and updating the interoperability design of the military UAS. In particular, we analyze the enhanced Datalink Transition/Handover Procedure and Autonomous functions, one of the biggest features added to the edition. Through this, we propose a modification of UA data link exclusive control using UA Bypass structure, which was impossible in the one-to-one communication structure between existing UA and Core UCS(CUCS). We also suggest ways to improve UA operational reliability by applying Autonomous Functions that directly decides how to deal with emergency situations, rather than by a remote operator over CUCS.

키워드

CPTSCQ_2019_v24n6_99_f0001.png 이미지

Fig. 1. ‘13 Inventory of Department of Defense UAS[4]

CPTSCQ_2019_v24n6_99_f0002.png 이미지

Fig. 2. Current UAS Operations Example[6]

CPTSCQ_2019_v24n6_99_f0003.png 이미지

Fig. 3. UAS Interoperability Architecture[6]

CPTSCQ_2019_v24n6_99_f0004.png 이미지

Fig. 4. STANAG-4586 Message Functional Group

CPTSCQ_2019_v24n6_99_f0005.png 이미지

Fig. 5. Current Transition/HO Concept

CPTSCQ_2019_v24n6_99_f0006.png 이미지

Fig. 6. STANAG–4586 Ed. 4 Datalink Transition/HO Concept

CPTSCQ_2019_v24n6_99_f0007.png 이미지

Fig. 7. Current Transition/HO Procedure

CPTSCQ_2019_v24n6_99_f0008.png 이미지

Fig. 8. STANAG–4586 Ed. 4 Transition/HO Procedure Proposal

CPTSCQ_2019_v24n6_99_f0009.png 이미지

Fig. 9. Proposition Mechanism Procedure Proposal

Table 1. STANAG-4586 Generic Message Table

CPTSCQ_2019_v24n6_99_t0001.png 이미지

Table 2. Datalink Discovery Messages[6]

CPTSCQ_2019_v24n6_99_t0002.png 이미지

Table 3. System ID Messages[6]

CPTSCQ_2019_v24n6_99_t0003.png 이미지

Table 4. Autonomy Messages

CPTSCQ_2019_v24n6_99_t0004.png 이미지

참고문헌

  1. P., Vasile, "UNMANNED AERIAL SYSTEM IN THE CONTEXT OF MODERN WARFARE", SCIENTIFIC RESEARCH & EDUCATION IN THE AIR FORCE, pp. 177-184, 2016.
  2. Bank of America Merrill Lynch, "Robot Revolution - Global Robot & AI Primer.", pp. 7, DEC 2015.
  3. Gertler, J. "US unmanned aerial systems", LIBRARY OF CONGRESS WASHINGTON DC CONGRESSIONAL RESEARCH SERVICE, pp. 12, JAN 2012.
  4. Department of Defense, "Unamnned Systems Integrated Roadmap FY2013-2038", pp. 5, 2014.
  5. Chanda, M., DiPlacido, J., Dougherty, J., Egan, R., Kelly, J.,Kingery, T., Liston, D.Mousseau, D., Nadeau, J.,Rothman, T.,Smith, L., Supko, M. "Proposed functional architecture and associated benefits analysis of a common ground control station for Unmanned Aircraft Systems". Naval Postgraduate School, pp. 3, 2010.
  6. NATO, "Standard Interfaces of Unmanned Aircraft(UA) Control Systems(UCS) for NATO UA Interoperability-Interface Control Document Edition 4". NATO Standardization Agency, APR. 2017.
  7. D. S. Lopez, G. Moreno, J. Cordero, J. Sanchez, S. Govindaraj, M. M. Marques, V. Lobo, S. Fioravanti, A. Grati, K. Rudin, M. Tosa, A. Matos, A. Dias, A. Martins, J. Bedkowski, H. Balta, and G. D. Cubber, "Search and Rescue Robotics - From Theory to Practice". InTech, pp. 97, 2017.
  8. D. Cofer et al., "A Formal Approach to Constructing Secure Air Vehicle Software," in Computer, vol. 51, no. 11, pp. 14-23, NOV 2018. https://doi.org/10.1109/mc.2018.2876051
  9. U.S. Army, "Unmanned Aircraft Systems Roadmap 2010-2035" UAS Center of Excellence(Fort Rucker), pp. 12, 2010.
  10. Sang wan No, Soon young Lee, Min Soo Kim, Young hoon Lee. "The study of the IFF Mode-5 to apply to Helicopter System" The Society for Aerospace System Engineering 2018 Spring Conference, pp. 114-115, 2018.
  11. T. Hutchings, "Architecting UAV sense & avoid systems," in 2007 Institution of Engineering and Technology Conference on Autonomous Systems, pp. 1-8, 2007.
  12. Peter Burt, "Off the Leash - The development of autonomous military drones in the UK", Drone Wars UK, pp. 36, NOV 2018.