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2005 | 14 | Suppl.1 |

Tytuł artykułu

System of bathymetric vessel position determination

Autorzy

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
This article deals with a method of vessel position determination based on underwater information. The method consists in processing images produced by hydroacoustic systems. The system of bathymetric position determination can be a source of navigational information supplementary to satellite navigation, or the only source in most cases of submarine navigation. Information received from the second independent source linked to potential navigational obstructions will enhance the reliability and safety of marine navigation.

Wydawca

-

Rocznik

Tom

14

Numer

Opis fizyczny

p.99-103,ref.

Twórcy

autor
  • Maritime University of Szczecin, Szczecin, Poland

Bibliografia

  • 1. BELL J. M., Application of optical ray tracing techniques to the simulation of sonar images, Optical Engineering, 36 (6), 1997.
  • 2. BELL J. M., CHANTLER M. J., WITT1G T.: Sidescan Sonar: a directional filter of seabed texture, IEE Proceedings. - Radar, Sonar and Navigation. 146 (1), 1999.
  • 3. BELL J. M., LINNET L.: Mt, Simulation and Analysis of Synthetic Sidescan Sonar Images, IEE Proceedings - Radar, Sonar and Navigation, 144 (4), p. 219- 226, 1997.
  • 4. BELLETTINI A., PINTO M. A.: Theoretical accuracy of synthetic aperture sonar micronavigation using a displaced phase-center antenna, IEEE Journal of Oceanic Engineering, v 27, n 4, 2002.
  • 5. COHEN P.: Bathymetric Navigation and Charting, Ayaderr Co Pub, 1980.
  • 6. FJEARAIDE H.: Navigation aided by terrain correlation for submarines, Kongsberg 2003; KNT OBR CTM Gdynia, 2003.
  • 7. FUJIMORI A., OGAWA Y., TERAMOTO M., Navigation of a sonar-equipped mobile robot with real-time local map building, Proceedings of the Institution of Mechanical Engineers. Part I: Journal of Systems and Control Engineering, v 214, n 5, 2000.
  • 8. LEONARD J. J., CARPENTER R. N., FEDER H. J. S.: Stochastic mapping using forward look sonar, Robotica, v 19, n 5, 2001.
  • 9. ŁUBCZONEK J., STATECZNY A.: Concept of neural model of the sea bottom surface. Advances in Soft Computing, Rutkowski, Kacprzyk, Eds., Physica-Verlag, A Springer-Verlag Company 2003.
  • 10. MAJUMDER S., SCHEDING S., DURRANT-WHYTE H. F.: Multisensor data fusion for underwater navigation, Robotics and Autonomous Systems 35, 2001.
  • 11. MCLAREN N., KUO C.: Geometrical Aspects of a sonar - based navigation system for underwater vehicles, Ocean Engng, vol. 23, no. 2, 1996.
  • 12. MING A., KAJIHARA K., KAJITANI M., SHIMOJO M.: Development of a rapid obstacle sensing system using sonar ring for mobile robot, IEEE International Conference on Robotics and Automation, 2002.
  • 13. PAŁCZYŃSKI M.: The concept of simulated sonar image generation for the needs of comparative navigation. VIII Science session of Informatics, Szczecin Technical University, Szczecin, 2004.
  • 14. PAŁCZYŃSKI M.: The problems of simulated sonar image construction for the needs of comparative navigation, VII Science session of Informatics, Szczecin Technical University,, Szczecin, 2003.
  • 15. POLITIS Z., PROBERT SMITH P. J.: Classification of textured surfaces for robot navigation using continuous transmission frequency-modulated sonar signatures, International Journal of Robotics Research, v 20, n 2, 2001.
  • 16. PUTTIPIPATKAJORN A., JOUVENCEL B., SALGADO- JIMENEZ T., A new method of pipeline detection in sonar imagery using Self-Organizing Maps, 2003 IEEE/RSJ International Conference on Intelligent Robots and Systems, 2003.
  • 17. SINGH H., WHITCOMB L., YOERGER D., PIZARRO O.: Microbathymetric mapping from underwater vehicles in the deep ocean, Computer Vision and Image Understanding 79, 2000.
  • 18. SMITH R., STEVENS A., FROST A., PROBERT P.: Developing a sensor-based underwater navigation system, International Journal of Systems Science, v 29, n 10, Oct, 1998.
  • 19. STATECZNY A. (editor), Methods of Comparative Navigation. Gdansk Science Society, Gdańsk 2004.
  • 20. STATECZNY A.: A comparative system concept of plotting the ship’s position. Proceedings of International Conference on Marine Navigation and Technology “MELAHA 2002” organized by Arab Institute of Navigation Alexandria Egypt 2002, (CD-ROM).
  • 21. STATECZNY A.: The algorithms of numerical map and radar matching. II Conference of Polish Cybernetic Society and IEEE, Gdynia 1989.
  • 22. STATECZNY A.: Artificial Neural Networks for Comparative Navigation. Artificial Intelligence and Soft Computing ICAISC 2004. Lecture Notes in Artificial Intelligence, Springer-Verlag, Berlin 2004.
  • 23. STATECZNY A.: Automatic identification of ship's position by means of digital chart and radar image correlation method. VI Symposium Maritime Elektronik Rostock 1989.
  • 24. STATECZNY A., BORAWSKI M., ŁUBCZONEK J., STOLARCZUK A.: The method of simulating sonar image generation for comparative ship’s positioning. Naval University, Gdynia 2002.
  • 25. STATECZNY A.: Comparative Navigation as an Alternative Positioning System. Proceedings of the 11th IAIN World Congress “Smart navigation - Systems and Services”, Berlin 2003.
  • 26. STATECZNY A.: Comparative Navigation. Gdansk Science Society, Gdansk 2001.
  • 27. STATECZNY A.: Comparative positioning of ships on the basis of neural processing of digital images. Proceedings of the European Geophysical Society Symposium G9 “Geodetic and Geodynamic Programmes of the CEI (Central European Initiative)” Nice 2003. Reports on Geodesy No. 1 (64), 2003.
  • 28. STATECZNY A.: Numerical map and radar matching. Geodesy and Cartography vol. XL No 3-4 1991.
  • 29. STATECZNY A., DUDA J.: The concept of comparative ship’s positioning on the base of sonar image. EXPLO-SHIP, Świnoujście 2004.
  • 30. STATECZNY A.: Methods of comparative plotting of the ship’sposition. Marine Engineering and Ports III. Editors C. A. Brebbia & J. Olivella. WIT Press Southampton, Boston 2002.
  • 31. STATECZNY A.: Neural interpolation method of hydrographic survey. Proceedings of the European Geophysical Society Symposium G9 “Geodetic and Geodynamic Programmes of the CEI (Central European Initiative)” Nice 2001. Reports on Geodesy No. 2 (57), 2001.
  • 32. STATECZNY A.: Comaprative ship’s positioning on the base of radar image. Science Works of Naval University Gdynia 1989 No 2.
  • 33. STATECZNY A., PRACZYK T.: Artificial Neural Networks in Maritime Objects Recognition. Gdansk Science Society, Gdańsk 2002.
  • 34. STATECZNY A.: Problems of comparative plotting of the ship’s position. Proceedings of the European Geophysical Society Symposium G9 “Geodetic and Geodynamic Programmes of the CEI (Central European Initiative)” Nice 2002. Reports on Geodesy No. 1 (61), 2002.
  • 35. STATECZNY A.: Problems of Computer Ship Position Plotting by Comparative Methods. Science Works of Naval University 107A/1990, Gdynia 1990.
  • 36. STATECZNY A., SZULC D.: Dynamic Ships Positioning Based on Hydroacoustic Systems. Hydroacoustic 2003 vol. 5/6 Annual Journal.
  • 37. STATECZNY A.: The neural method of sea bottom shape modeling for spatial maritime information system. Marine Engineering and Ports II. Editors C. A. Brebbia & J. Olivella. WIT Press Southampton, Boston 2000.
  • 38. STATECZNY A., WĄŻ M., SZULC D.: The aspects of the simulation of the sea bottom sonar image obtained as a result of mathematical modeling of the sounding profdes. Science works of Maritime University Szczecin No 65, 2002.
  • 39. WHITCOMB L., YOERGER D., SINGH H.: Advances in Doppler-based navigation of underwater robotic vehicles, Proceedings of the 1999 IEEE International Conference on Robotics and Automation, ICRA99, 1999.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-article-cb1a3e3a-d559-431c-9612-b16a75351da8
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