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Selected qualities of mobile maps for indoor navigation

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Języki publikacji
EN
Abstrakty
EN
The map is the key element in any navigation system. The dynamic growth of indoor navigation systems requires improvements in quality not only of positioning systems but also of maps of building interiors. Most emergent solutions in this field do not use cartographic knowledge. Cartographic methodology for representing building interiors is still in its initial stages of development. Its proper use may, however, be of great importance to the effectiveness of indoor navigation. The author presents important features that indoor mobile maps should possess, for both the data model and the presentation method to be used. In this context, the question of the contemporary definition of a map is also discussed.
Rocznik
Strony
155--165
Opis fizyczny
Bibliogr. 29 poz., rys., tab.
Twórcy
  • Warsaw University of Technology, Faculty of Geodesy and Cartography, Department of Cartography
Bibliografia
  • Baranowski M., Gotlib D. Olszewski R., 2017, In search of the essence of cartography. In: M.P. Peterson (ed), Advances in Cartography and GIScience. “Lecture Notes in Geoinformation and Cartography”. Berlin: Springer; DOI:10.1007/978-3-31957336-6_36
  • Blippar launches indoor visual positioning system for enhanced location-based augmented reality, press release 2018; available online: https://www.globenewswire.com/news-release/2018/08/09/1549839/0/en/Blippar-Launches-Indoor-Visual-PositioningSystem-for-Enhanced-Location-Based-AugmentedReality.html (access 3.11.2019).
  • Chen J., Clarke K.C., 2019, Indoor cartography. “Cartography and Geographic Information Science”, DOI: 10.1080/15230406.2019.1619482
  • Clarke K.C., Johnson J.M., Trainor T., 2019, Contemporary American cartographic research: a review and prospective. “Cartography and Geographic Information Science” Vol. 46, pp. 196–209.
  • Dillemuth J., 2008, MapSize matters: difficulties of small-display map use. In: “4th International Conference on LBS and TeleCartography Hong Kong”. G. Georg, E. Mok (eds). “Journal of Location Based Services” Vol. 2, Issue 1, DOI: 10.1080/17489720802345386
  • Fellner I., Huang H., Gartner G., 2017, “Turn left after the WC, and use the lift to go to the 2nd floor” − generation of landmark-based route instructions for indoor navigation. “ISPRS International. Journal Geo-Information” Vol. 6, 183; DOI:10.3390/ijgi6060183
  • Gartner G., 2000, TeleKartographie. “GeoBIT” Vol. 4, pp. 21−24.
  • Gartner G., 2009, Ubiquitous cartography. “American Congress of Surveying and Mapping (ACSM) Bulletin”, pp. 22−24.
  • Gartner G., Bennett D.A., Morita T., 2007, Towards ubiquitous cartography. “Cartography and Geographic Information Science” Vol. 34, no. 4, pp. 247−257.
  • Gartner G., Cartwright W., Peterson M. (eds.), 2007, Location based services and tele-cartography. lecture notes in geoinformation and cartography. Berlin: Springer.
  • Gotlib D., 2001, Metodyka prezentacji kartograficznych w mobilnych systemach lokalizacyjnych i nawigacyjnych (Methods of cartographic presentation for mobile navigation systems and location based services). “Prace naukowe Politechniki Warszawskiej. Geodezja”. Warsaw University of Technology, Vol. 48, pp. 1−155.
  • Gotlib D., Gnat M., Marciniak J., 2012, The research on cartographical indoor presentation and indoor route modeling for nNavigation applications. In: International Conference on Indoor Positioning and Indoor Navigation. 13−15th November 2012, Sydney, Australia, IEEE Xplore, 10.1109/IPIN.2012.6418876.
  • Gotlib D., Gnat M., 2018, Koncepcja i prototyp wielofunkcyjnego systemu informacji przestrzennej wspomagającego zarządzanie i użytkowanie nieruchomości Politechniki Warszawskiej. “Roczniki Geomatyki” T. 16, nr 4 (83), pp. 299–318.
  • Gotlib D., Marciniak J., 2012, Cartographical aspects in the design of indoor navigation systems. “Annual of Navigation”, Polish Navigation Forum, Gdynia, Vol. 19.
  • Huang H., Gartner G., 2010, A survey of mobile indoor navigation systems. In: G. Gartner, F. Ortag (eds.), Cartography in Cenral and Eastern Europe. Lecture Notes in Geoinformation and Cartography. Berlin/Heidelberg: Springer, pp. 305−319.
  • Isikdag U., Zlatanova S., Underwood J., 2013, A BIMoriented model for supporting in-door navigation requirements. “Computers, Environment and Urban Systems” Vol. 41, no. 9, pp.112–123.
  • Krisp J.M., Jahnke M., Lyu H., Fackler F., 2014, Visualization and communication of indoor routing information progress in location-based services 2014. Berlin: Springer, pp. 33−44.
  • Lorenz A., Thierbach C., Baur N., Kolbe T.H., 2013, Map design aspects, route complexity, or social background? Factors influencing user satisfaction with indoor navigation maps. “Cartography and Geographic Information Science” Vol. 40, pp. 201−209.
  • Marciniak J., 2018, Wykorzystanie kartograficznych modeli wnętrz budynków do podniesienia jakości procesu nawigacji. PhD Thesis, Warsaw University of Technology, Faculty of Geodesy and Cartography.
  • Meng L., 2005, Egocentric design of map-based mobile services. “The Cartographic Journal” Vol. 42, no. 1, pp. 5−13.
  • Morita T., 2005a, A working conceptual framework for ubiquitous mapping. In: Proceedings of the 22nd Intern. Cartographic Conference, July 9–16 2005, La Coruña, Spain.
  • Morita T., 2005b, Ubiquitous mapping in Tokyo. In: Proceedings of the First International Joint Work shop on Ubiquitous, Pervasive and Internet Mapping; 7−9 September 2005, Tokyo, Japan, pp. 9−13.
  • Morris C.,1960, Foundations of the theory of signs. International encyclopedia of unified science. Vol. 1, no. 2. Foundation of the unity of science. Chicago: University of Chicago Press.
  • Nissen F., Hvas A., Münster-Swendsen J., Brodersen L., 2003, Small-Display Cartography. GiMoDig Scientific Report 2003; available online: https:// vbn.aau.dk/ws/portalfiles/portal/453264/GiMoDig. pdf (access 3.11.2019).
  • Nossum A.S., 2011 IndoorTubes a novel design for indoor maps Cartography and Geographic Information Science. “Cartography and Geographic Information Science” Vol. 38, pp. 192−200, DOI: 10.1559/15230406382192
  • Puikkonen A., Sarjanoja A.H., Haveri M., Huhtala J., Häkkilä J., 2009, Toward designing better maps for indoor navigation: experiences from a case study. In: Proceedings of the 8th International Conference on Mobile and Ubiquitous Multimedia, 22–25 November 2009. Cambridge, New York: ACM, pp. 161–164.
  • Reichenbacher T., 2001, The world in your pocket − towards a mobile cartography. In: Proceedings of the 20th Intern. Cartographic Conference, 6−10 August 2001, Beijing, China.
  • Reichenbacher T., 2004, Mobile cartography – adaptive visualization of geographic information on mobile devices. PhD Thesis, Der Technischen Universität München.
  • Zipf A., Richter K.F., 2002, Using focus maps to ease map reading: developing smart applications for mobile devices. “Künstliche Intelligenz”, Bremen, No. 4/02, pp. 35−37.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2020).
Typ dokumentu
Bibliografia
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bwmeta1.element.baztech-0fc1fb37-db30-40e5-ac33-81be0570dcb1
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