지형참조항법시스템의 발전 동향

  • Published : 2013.03.25

Abstract

본 고는 국내외의 지형참조항법시스템 관련 기술의 발전 동향을 살펴보고자 한다. 지형참조항법은 국외에서 1940년대부터 그 필요성이 대두된 학문으로 잠수정, 군용 전투기 등 다양한 분야에서 주로 군사목적으로 연구가 진행되었다. 1950년 ATRAN의 개발을 시작으로 1990년대 PTAN 지형참조항법기술까지 발전되어 무인기뿐만 아닌 Tomahawk 같은 유도무기에도 그 활용 범위를 넓혀가고 있다. 하지만 하드웨어적인 제약과 GPS의 발달로 관련 연구가 주춤하였으나 컴퓨터 기술의 발달, 지형측정센서의 정확도 향상과 더불어 GPS 교란 가능성 등이 부각되면서 최근 다시 관성항법시스템(INS)을 보조하는 대체 항법으로서 주목받고 있다. 주로 다중 측정치를 이용하는 방법과 비선형 필터를 이용하여 항법해 성능을 향상시키거나 병렬 다중필터를 이용하여 항법해의 신뢰성을 향상시키는 방향으로 연구가 진행 중이다. 그리고 다양한 지구물리데이터와 통합한 데이터베이스기반 복합항법 기술로 발전하고 있다.

Keywords

Acknowledgement

Supported by : 국방과학연구소

References

  1. P. D. Groves, Principles of GNSS, Inertial, and Multisensor Integrated Navigation Systems, Artech house, 2008.
  2. D. Vaman, "TRN History, Trends and The Unused Potential," DASC 2012, pp. 1A3-1 - 1A3-16, October 2012.
  3. 권재현, 박찬국, 방효충, 지능형 데이터베이스기반 항법기술에 관한 연구, 1단계 최종보고서, 서울시립대학교, 2011.
  4. N. Wilkinson, T. Brooks, and A. Price, Latest developments of the TERPROM(R) digital terrain system 2009," Joint Navigation Conference, June 2009.
  5. D. Kidner, M. Dorey, and D. Smith, "What's the point? interpolation and extrapolation with a regular grid DEM," Fourth International Conference on GeoComputation, Fredericksburg, VA, USA. July 1999.
  6. 권재현, 박찬국, 방효충, 지능형 데이터베이스기반 항법기술에 관한 연구, 기술현황분석보고서, 서울시립대학교, 2009.
  7. Z. Wang, S. Bian, " A local geopotential model for implementation of underwater passive navigation," Progress in Natural Science, vol. 18, no. 9, pp.1139-1145, 2008. https://doi.org/10.1016/j.pnsc.2008.02.011
  8. 이지선, 권재현, 유명종, "중력모델링과 중력참조항법에의 적용," 한국측량학회지, vol. 29, no. 5, pp. 543-550, 2011.
  9. 권재현, 박찬국, 방효충, 지능형 데이터베이스기반 항법기술에 관한 연구, 1단계 최종보고서, 서울시립대학교, 2010.
  10. I. Nygren, M. Jansson, "Terrain navigation for underwater vehicles using the correlator method," IEEE Journal of Oceanic Engineering, vol. 29, no. 3. pp. 906-915, July 2004.
  11. McGuffin, T. John, Terrain referenced navigation-adaptive filter distribution," U.S. Patent, no. 5,331,562, July 1994.
  12. R. F. Koch, D. C. Evans, ATRAN terrain sensing guidance-The grand-daddy system," SPIE Mtg, Image Processing for Missile Guidance, vol. 238, pp. 2-9, 1980.
  13. C. A. Baird, M. R. Abramson, "A comparison of several digital map-aided navigation techniques," In proceedings of the PLANS, pp. 286-293, Nov. 1984.
  14. G. M. Siouris, Missile Guidance and Control Systems, Springer-Verlag, New York, 2003.
  15. J. L. Campbell, M. U. de Haag, F. van Graas, Terrain referenced precision approach guidance," In proceedings of the ION NTM, January 2005.
  16. T. M. Laur, S. L. LLanso, Encyclopedia of Modern U.S. Military Weapons, The Army Times Publishing Company with Berkley Publishing Group, New York, 1995.
  17. F. W. Riedel, S. M. Hall, J. D. Barton, J. P. Christ, B. K. Funk, T. D. Milnes, and D. R. Stark, "Guidance and navigation in the global engagement department," Johns Hopkins APL Technical Digest, vol. 29, no. 2, pp. 118-132.
  18. G. L. Mealy, W. Tang, Application of multiple model estimation to a recursive terrain height correlation system," IEEE Transactions on Automatic Control, vol. 28, no. 3, pp. 323-331, March 1983. https://doi.org/10.1109/TAC.1983.1103233
  19. L. D. Hostetler, R. D. Andreas, "Nonlinear-K alman filtering techniques for terrain-aided navigation," IEEE Transactions on Automatic Control, vol. 28, no. 3, pp. 315-323, March 1983. https://doi.org/10.1109/TAC.1983.1103232
  20. D. D. Boozer, J. R. Fellerhoff, SITAN test results in the AFTI/F-16 aircraft," Journal of The Institute of Navigation, vol. 35, no. 2, pp. 161-176, 1988. https://doi.org/10.1002/j.2161-4296.1988.tb00949.x
  21. P. J. Yu, Z. Chen, and J. C. Hung, Performance evaluation of six terrain stochastic linearization techniques for TAN," In proceedings of the NAECON 91, pp. 382-388, May 1991.
  22. J. Hollowell, "HELI/SITAN: A terrain referenced navigation algorithm for helicopters," In proceedings of the PLANS, pp. 616- 625, March 1990.
  23. A. R. Runnalls, "Apparatus incorporating recursive estimator," U.S. Patent, no. 4,786,908, Nov. 1988.
  24. A. R. Runnalls, "A bayesian approach to terrain contour navigation," AGARD Guidance and Control Panel 40th Symposium, May 1985.
  25. A. Robins, "Recent developments in the TERPROM integrated navigation system," In proceedings of the ION 44th Annual Meeting, June 1998.
  26. Honeywell, "Precision terrain aided navigation (PTAN)," Honeywell Brochure, 2005.
  27. S. H. Thomas, L. D. Almsted, "Method and systems for interferometric cross track phase calibration," U.S. Patent, no. 7,417,586. Aug. 2008.
  28. J. L. Campbell, Application of Airborne Laser Scanner - Aerial Navigation, Ph. D. dissertation, The Russ College of Engineering and Technology of Ohio University, 2006.
  29. O. Bergem, Bathymetric Navigation of Autonomous Underwater Vehicles using a Multibeam Sonar and a Kalman Filter with Relative Measurement Covariance Matrices, University of Trondheim, Doctoral Dissertation, 1993.
  30. P. E. Hagen, N. Strkersen, K. Vestgard, P. Kartvedt, and G. Sten, "Operational military use of the HUGIN AUV in Norway," Proceedings from UDT Europe, 2003.
  31. B. Jalving, M. Mandt, O. K. Hagan, and F. Pohner, "Terrain referenced navigation of AUVs and submarines using multibeam Echo Sounders, In Proceedings from UDT Europe, 2004.
  32. K. B. Anonsen and O. K. Hagen, An analysis of real-time terrain aided navigation results from a HUGIN AUV," proceedings of the OCEANS, pp. 1-9, September 2010.
  33. J. Carlstorm, I. Nygren, "Terrain navigation of the swedish AUV62F vehicle, International Symposium on Unmanned Untethered Submersible, Aug. 2005.
  34. 이선민, 유영민, 이원희, 이달호, 박찬국, "기율기 프로파일을 이용한 일괄처리 방식 지형참조항법의 성능 개선," 제어.로봇.시스템학회 논문지, 제18권, 4호, pp. 384-390, 2012.
  35. Y. M. Yoo, W. H. Lee, S. M. Lee, C. G. Park, and J. H. Kwon, "Improvement of TERCOM aided inertial navigation system by velocity correction," In proceedings of the PLNAS, pp. 1082-1087, April 2012.
  36. W. H. Lee, Y. M. Yoo, S. M. Lee, C. G. Park, Improvement of batch processed TRN considering MAD statistics," In proceedings of the AIAA GNC, 2012.
  37. 이선민, PMF기반 지형참조항법 시스템의 항법 성능과 지형간의 상관지수 분석, 서울대학교 석사학위논문, 2012.
  38. S. H. Mock, M. C. Choi, H. C. Bang, Performance comparison of nonlinear estimation techniques in terrain referenced navigation," In proceedings of the ICCAS 2011, pp.1245-1250, 2011.
  39. 유영민, 이선민, 권재현, 유명종, 박찬국, "지형 험준도를 고려한 프로파일 기반 지형참조항법과 관성항법의 결합 알고리즘," 제어.로봇.시스템학회 논문지, vol. 19, no. 2, pp. 131-139, 2013.
  40. 유영민, 박찬국, "중력이상을 이용한 INS 결합항법 시스템의 성능 분석," 국방과학연구소 창설 40주년 기념 종합학술대회, pp. 295-298, Oct. 2010.
  41. K. D. Wang, L. Yan, W. Deng, J. H. Zhang, "Research on iterative closest contour point for underwater terrain-aided navigation," Lecture Notes in Computer Science 4109, Springer-Verlag, pp.252-260, 2006.
  42. J. Metzger, O. Meister, G. F. Trommer, F. Tumbragel, and B. Taddiken, "Adaptations of a comparison technique for terrain navigation," Aerospace Science and Technology, vol. 9. No. 6, pp. 553-560, 2005.
  43. W. Mark, Jr. Cannon, TERCOM Performance: Analysis and Simulation, Technical Report AMRL-TR-73-130, Wright-Patterson AFB, Ohio, June 1974.
  44. H. Feng, L. Yan, Z. L. Deng, and K. D. Wang, "Data map characteristic in aided navigation," In proceedings of the PLANS, pp. 771-774, April 2004.
  45. N. Bergman, Recursive Baysian Estimation: Navigation and Tracking Application, Department of Electrical Engineering, Linkoping University, Doctoral Dissertation 579, 1999.
  46. M. Simandl, J. Kralovec, and T. Soderstrom, "Advanced pointmass method for nonlinear state estimation," Automatica, vol. 42, no. 7, pp.1133-1145, 2006. https://doi.org/10.1016/j.automatica.2006.03.010
  47. A. Bar-Gill, P. Ben-Ezra, and I. Y. Bar-Itzhack, Improvement of terrain-aided navigation via trajectory optimization," IEEE Transactions on Control Systems Technology, vol. 2, no. 4, pp. 336-342, 1994. https://doi.org/10.1109/87.338654
  48. S. Paris, S, J. P. Le Cadre, "Planning for terrain-aided navigation," In proceedings of the Fifth International Conference on Information Fusion, vol. 2, pp. 1007-1014, July 2002.
  49. J. A. Richeson, Gravity gradiometer aided inertial navigation within Non-GNSS environments, Ph.D. thesis, University of Maryland, 2008.