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Tytuł artykułu

Comparison of the Applied of Car Navigation System and Developed Marine Navigational System

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Języki publikacji
EN
Abstrakty
EN
A watch officer in sailing a ship uses many kinds of navigational information to prevent marine disasters. Especially in coastal sea area such as narrow bay or port, many ships crowds and marine disasters tend to occur more often. In these regions, effective presentation of variety navigational information is very important. On other hand, a car navigation is very effective in road traffic, However, it is not used almost in sea traffic. Our objective in this paper is to apply a car navigation to ship sailing. Also, a marine navigation system proposed by us was compared with a car navigation system. In this study, authors tried some ways of utilizing car navigation technology for the sea. To improve navigational security and safety, we investigated whether car navigation systems could be applied to marine traffic. The applicability was evaluated through several comparisons of our navigation assistance device using GIS.
Twórcy
autor
  • Kobe University, Organization of Advanced Science and Technology, Japan
autor
  • Kobe University, Maritime Sciences, Japan
Bibliografia
  • 1. Gold, C. et al. 2005. 3d geographic visualization: The marine gis. Developments in Spatial Data Handling, Springer Berlin Heidelberg, 17‐28.
  • 2. Goralski R.I et al. 2007. The Development of a dynamic GIS for Maritime Navigation Safety, ISPRS Workshop on Updating Geo‐spatial Databases with Imagery & The 5th ISPRS Workshop on DMGISs, 47‐50.
  • 3. Imazu, H. et al. 2003. Study of the Integration and Presentation of Navigational Information. The Journal of Japan Institute of Navigation,109: 133‐140.
  • 4. Japan Coast Guard, 2007. Condition of generation and rescue of marine disaster and accident involving a human life. pp.16‐19.
  • 5. Kawasaki A. 2006. Illustration, Step up for practice of GIS. okin Shoin, p.174.
  • 6. Peng, G et al. 2008. Research on Navigation‐aids Information System, International Conference on Cyberworlds (2008):601‐604
  • 7. Sadohara S. 2005. Illustration, Study on Near Example of ArcGIS, Kokin Shoin, p.176.
  • 8. Sanyo Electric Co. 2011. Manual of SSD Portable‐Navigation. No. NV‐SD760FT,p.A‐14 ‐ A‐38.
  • 9. Shiotani, S. et al. 2011. ON STUDY OF SUP‐PORT OF NAVIGATIONAL INFORMATION FOR PREVENTION OF ACCIDENT ON MARINE TRAFFIC IN COASTAL SEA AREA ‐INFORMATION OF WATER DEPTH‐. Journal of Civil Engineering D3(Infrastructure Planning) 28: I_1039‐I_1047.
  • 10. Shiotani, S. et al. 2011. STUDY ON NAVIGA‐TIONAL SIMULATION FOR SAFTY OF SHIP SAILING IN COASTAL SEA AREA. Journal of Civil Engineering D2 (Ocean Development). 67(72): I_838‐I_843.
  • 11. Wakabayashi, N. et al. 2002. Acquisition and Transfer System for Ship Navigation using IP Net‐work –Implementation on T.S. Fukae maru‐. The Journal of Japan Institute of Navigation 106: 29‐37.
  • 12. Wang, Y. et al.2013. Integration of Google Maps/Earth with microscale meteorology models and data visualization, Computers & Geosciences (2013),23‐31
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-68eba878-5326-4757-9f9c-b85756de3008
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