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Application of the Layered Model Management System in an interactive map of the university campus

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EN
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EN
The paper presents a web application for navigation through the university campus, which is based on Global Positioning System GPS and Open Street Map. The application has a multilayer structure and multi-labelling support. The proposed solution ensures better management of visual data more efficient image processing comparing to the other known methods. With the new search system, users can place a lot of information on one layer without losing the legibility of displayed data. All the information that was displayed on the map was grouped and assigned to the appropriate categories.Therefore a map contains a lot of related information that needs to be linked to each other. The system has been divided into modules that ensure the integrity of the displayed things. Presenting so much information at the same time is managed by modules. Their main job is to provide results that is then segregated and grouped. System presented in this paper was applied for Lodz University of Technology.
Twórcy
  • Lodz University of Technology
  • Lodz University of Technology
  • Lodz University of Technology
Bibliografia
  • [1] Baisantry, M., Saxena, V. (2016). Removal of ladder effects by smoothening the integer format elevation layer via development of a QGIS plugin. In Computing, Communication and Automation (ICCCA), 2016 International Conference on (pp. 1054-1058). IEEE
  • [2] Chodorow, K. (2013). MongoDB: The Definitive Guide: Powerful and Scalable Data Storage. O’Reilly Media, Inc.
  • [3] Chung-Hua, C., Chenyang, H. (2015). A Platform for Travel Planning by Using Google Maps. In Mobile Data Management (MDM), 2015 16th IEEE International Conference on (Vol. 2, pp. 120-125). IEEE
  • [4] Crickard III, P. (2014). Leaflet. js Essentials. Packt Publishing Ltd
  • [5] Derrough, J. (2013). Instant Interactive Map Designs with Leaflet JavaScript Library How-to. Packt Publishing Ltd
  • [6] Graser, A., Mearns, B., Mandel, A., Olaya Ferrero, V., Bruy A. (2010). QGIS: Becoming a GIS Power User, O’Reilly Media
  • [7] Murray, S. (2017). Interactive Data Visualization for the Web: An Introduction to Designing with. O’Reilly Media, Inc.
  • [8] Nawrocki, W. (2016). Measurement systems and sensors. Artech House. (p. 231-268)
  • [9] Steele, J., Iliinsky, N. (2010). Beautiful visualization: looking at data through the eyes of experts. O’Reilly Media, Inc.
  • [10] Sunehra, D., Priya, P.L., Bano, A. (2016). Children Location Monitoring on Google Maps Using GPS and GSM Technologies. In Advanced Computing (IACC), 2016 IEEE 6th International Conference on (pp. 711-715). IEEE
  • [11] Tan, Q.Q., Luo, H.C., Ren, Z.L., Liu, Q. (2016). Research on earthquake emergency response technology based on Google Maps data. In Cloud Computing and Internet of Things (CCIOT), 2016 2nd International Conference on (pp. 85-88). IEEE
  • [12] Windarni, V. A., Sediyono, E., Setiawan, A. (2016). Using GPS and Google maps for mapping digital land certificates. In Informatics and Computing (ICIC), International Conference on (pp. 422-426). IEEE.
Typ dokumentu
Bibliografia
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bwmeta1.element.baztech-74732fab-9513-4cb7-b29e-9d3fd71476b5
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