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The methods of performing the viewshed analyses on inland waters for complex objects

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Języki publikacji
EN
Abstrakty
EN
Observational sensors, such as CCTV cameras and radars, are part of the RIS system. These sensors should provide information about the current situation on the waterway and to a greater extent – aquatory. Barriers for the observational sensor, in the sense of reducing the view field, are various objects in the aquatory. This is one of the main factors that make it difficult to determine the proper location of the sensor. Currently, in order to increase the efficiency of determining the locations of the observational sensors are used different tools for performing spatial analysis. This applies to both the initial geographical identification as well as detailed analysis. Analysis efficiency, in turn, depends on the model of the environment, represented in the form of the Digital Surface Model. Given the complexity of some geographic features, it should be used the appropriate methodology for the visibility analysis, as well as the preparation of the input material. The following work includes the theme of visibility analysis on inland waters, with special emphasis on the complex objects. They include bridges, cranes, buildings, high vegetation and other engineering structures.
Słowa kluczowe
Rocznik
Strony
97--102
Opis fizyczny
Bibliogr. 13 poz., rys.
Twórcy
  • Maritime University of Szczecin, Chair of Geoinformatics 70-500 Szczecin, ul. Wały Chrobrego 1–2
Bibliografia
  • 1. Commission Regulation (EC) No 414/2007 of 13 March 2007 concerning the technical guidelines for the planning, implementation and operational use of river information services (RIS) referred to in Article 5 of Directive 2005/44/EC of the European Parliament and of the Council on harmonised river information services (RIS) on inland waterways in the Community.
  • 2. ŁUBCZONEK J.: Evaluation of functionality of ArcGIS and ERDAS Imagine programs in the aspect of the spatial planning of the observational sensors. Annals of Geomatics, Vol. 9, No. 2(46), 2011 (in Polish).
  • 3. ŁUBCZONEK J., KAZIMIERSKI W., PAŁCZYŃSKI M.: Planning of combined system of radars and CCTV cameras for inland waterways surveillance by using various methods of viewshed analysis. Proceedings of International Radar Symposium, Lipsk 2011.
  • 4. ŁUBCZONEK J., STATECZNY A.: Spatial planning of landbased marine radar sensors by using 3D carthographical model of the port and urbanized areas. CD edition. Coast-GIS Conference, Oostend 2011.
  • 5. ŁUBCZONEK J.: Supporting design of observational sensors system on inland waterways by using ArcGIS software. CD edition. Logistics, No. 6, CD No. 3, 12, 2011 (in Polish).
  • 6. STATECZNY A., KAZIMIERSKI W.: Selection of GRNN network parameters for the needs of state vector estimation of manoeuvring target in ARPA devices. Proceedings of SPIE, Vol. 6159, 2006.
  • 7. STATECZNY A., KAZIMIERSKI W.: A comparison of the target tracking in marine navigational radars by means of GRNN filter and numerical filter. Proceedings of IEEE Radar Conference 2008.
  • 8. STATECZNY A., KAZIMIERSKI W.: Determining manoeuvre detection threshold of GRNN filter in the process of tracking in marine navigational radars. Proceedings of International Radar Symposium 2008, Wrocław 2008.
  • 9. ŁUBCZONEK J., BECZKOWSKI K.: Application of GPS / RTK – Trupulse 360B measurement set for 3D building modelling. Archives of Photogrammetry, Cartography and Remote Sensing, Vol. 23, 2012 (in Polish).
  • 10. ŁUBCZONEK J., WAWRZYNIAK N.: Three-dimensional tree modelling in the context of spatial planning of observation sensors on inland waterways. Archives of Photogrammetry, Cartography and Remote Sensing, Vol. 23, 2012 (in Polish).
  • 11. SMITH M., GOODCHILD M., LONGLEY P.: Geospatial Analysis - a comprehensive guide to Principles, Techniques and Software Tools. 3rd edition, 2009, 337–342.
  • 12. ŁUBCZONEK J.: Application of modified method of viewshed analysis in radar sensor network planning on inland waterways. 13th International Radar Symposium (IRS), Warszawa 2012.
  • 13. ŁUBCZONEK J.: The accuracy of determination of radar shadows. Annual of Navigation 19, 2012 (part 2).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-5d419c6c-e017-4b14-9c39-92966e49bac2
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