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Politechnika Morska w Szczecinie

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Author Włodarczyk-Sielicka, Marta
Affiliation Maritime University of Szczecin, Faculty of Navigation, Chair of Geoinformatics 71-250 Szczecin, ul. Żołnierska 46
E-mail m.wlodarczyk@am.szczecin.pl
Author Bodus-Olkowska, Izabela
Affiliation Maritime University of Szczecin, Faculty of Navigation, Chair of Geoinformatics 71-250 Szczecin, ul. Żołnierska 46
E-mail i.olkowska@am.szczecin.pl
Author Stateczny, Andrzej
Affiliation Maritime University of Szczecin, Faculty of Navigation, Chair of Geoinformatics 71-250 Szczecin, ul. Żołnierska 46
E-mail astat@am.szczecin.pl
ISSN printed 1733-8670
URI https://repository.am.szczecin.pl/handle/123456789/506
Abstract Digital hydrographic products include the ENC Electronic Navigational Charts and the IENC Inland Electronic Navigational Charts used for inland shipping. The process of IENC production comprises data acquisition and editing. Each object belongs to a class specified in the applicable standards and possesses necessary attributes. IENC cells include, among others, data related to depths in a given water body. Contemporary bathymetric measuring systems allow for saving more and more data of increased quality. Examples of systems characterized by the ability to acquisition high density data are interferometer systems. The authors of this article used GeoSwath Plus 250 kHz sonar system to collect bathymetric data. Bathymetric data included in the IENC cell should be up to date, structured and easy to manage. A piece of software by the ESRI Company, also dedicated to creating hydrographic products, allows to do just that. The authors have used a specialized geodatabase during the IENC production, which made managing bathymetric data easier. The article describes an analysis of the geodatabase’s functionality during the production of electronic navigational chart for inland shipping
Pages 168-173
Publisher Scientific Journals of the Maritime University of Szczecin, Zeszyty Naukowe Akademii Morskiej w Szczecinie
Keywords navigation
Keywords electronic charts
Keywords IENC
Keywords geodatabase
Keywords bathymetry
Title Application of geodatabase dedicated for bathymetric data during the production of electronic navigational charts for inland shipping
Type Review article
References
  1. ŁUBCZONEK J. i in.: Analiza standardów elektronicznych map nawigacyjnych w aspekcie tworzenia geoinformacyjnego systemu ochrony portu. Archiwum fotogrametrii, kartografii i teledetekcji, Vol. 23, Wrocław 2012.
  2. Technical brochure of multibeam echosounder EM3002, Kongsberg, www.km.kongsberg.com.
  3. Technical brochure of interferometr bathymetric sonar GeoSwath Plus, Kongsberg, www.km.kongsberg.com.
  4. Technical brochure of singlebeam echosounder EA400, Kongsberg, www.km.kongsberg.com.
  5. IHO. Standards for Hydrographic Surveys. 5th Edition, Special Publication No. 44, February 2008.
  6. IHO. Standard Electronic Chart Display and Information System for Inland Navigation Inland ECDIS. Central Commission for Navigation of the Rhine (CCNR), Ed. 2, 2006.
  7. IHO. Transfer Standard for Digital Hydrographic Data. Ed. 3.1. Special Publication No. 57, 2000.
  8. IEHG. Inland ENC Harmonization Group. Inland Electronic Navigational Chart Encoding Guide, Edition 2.2.0, 2010.
  9. ONSWG. Format Specification Document. Description of Bathymetric Attributed Grid Object (BAG),Ver 1.0.0, 2006. Others
  10. IEHG. Inland ENC Harmonization Group. Inland ENC Feature Catalogue, Edition 2.2, 2010.
  11. IHO. Specification for Chart Content and Display Aspects of ECDIS. Ed. 5.0, Special Publication No. 52, 1996.
ISSN on-line 2392-0378
Language English
Funding No data
Figures 6
Tables 2
Published 2013-09-10
Accepted 2013-08-10
Recieved 2013-07-15


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