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http://dx.doi.org/10.9708/jksci.2011.16.8.147

Implementation of an Indoor Location Based Contents Displaying System Using Web Services  

Yim, Jae-Geol (Dept. of Computer Engineering, Dongguk University)
Kim, Min-Soo (Dept. of Computer Engineering, Dongguk University)
Abstract
Map rendering, positioning, database managements are key elements of location based services. Google map and GPS (Global Positioning System) have become a very popular solution for map rendering and positioning, respectively. They are very effective and yet free of charge. However, they cannot be used for an indoor location based service system. We cannot render a building drawing with Google map, we cannot determine a moving object's position when it is indoor. This paper introduces our web services of rendering drawings, indoor positioning, and multimedia contents up-loading and playing so that any programmers can use them in developing indoor location based service systems. In order to experimentally show the efficiency of our web services, we have built a location based contents displaying system for museum visitors with them.
Keywords
Web Service; Indoor Location Based Service; Contents; Indoor Positioning; Rendering Drawings;
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1 W. Li, J. Jin, Y. Zhang, "Research and Design of LBS System Based on SVG Service Components," International Conference on Management and Service Science, (MASS '09) pp. 1-4, 2009.
2 F. Zhu, B. Jin, J. Zhang, "Towards Spatial Info rmation Services in LBS: A GML-Based Approach," 2010 International Conference on Machine Vision and Human-Machine Interface (MVHI), pp. 588-591, 2010.
3 Y. Xu, X. Chen, L. Ma, "LBS Based Disaster and Emergency Management," 2010 18th International Conference on Geoinformatics, pp. 1-5, 2010.
4 X. Zhu, C. Zhou, "POI Inquiries and Data Update Based on LBS," 2009 International Symposium on Information Engineering and Electronic Commerce, (IEEC '09) pp. 730-734, 2009.
5 G. Alonso, F. Casati, H. Kuno, and V. Machiraju, Web Services: Concepts, Architectures and Applications Springer, 2004.
6 M. Stal, "Web Services: Beyond Component-Based Computing," Comm. ACM, vol. 55, no. 10, 2002.
7 W. Vogels, "Web Services Are Not Distributed Object s," IEEE Internet Computing, vol. 7, no. 6, Nov./Dec. 2003.
8 Datalex, http://www.datalex.com
9 Galileo Launches Global Web Services Platform, http://xml.coverpages.org/GalileoGlobalWS.htm/
10 Amazon Web Services, http://aws.amazon.com/
11 B. Kulvatunyou, N. Ivezic, "Semantic Web for man ufacturingWeb services," Proceedings of the 5th Biannual World Automation Congress, pp. 597-606, 2002.
12 W. Shen, Y. Li, Q. Hao, S. Wang, "Implementing Collaborative Manufacturing with Intelligent Web Services," Fifth International Conference on Computer and Information Technology 2005.
13 V. Stoicu-Tivadar, L. Stoicu-Tivadar, V. Topac, D. Berian, "A WebService-based Alarm Solution in a TeleCare System," 5th International Symposium on Applied Computational Intelligence and Informatics, SACI '09. pp. 117-122, 2009.
14 Y. Park, T. Kirkham, P. Phaithoonbuathong, R. H arrison, "Implementing agile and collaborative automation using Web Service orchestration," IEEE International Symposiumon Industrial Electronics, pp. 86-91, July 2009.
15 S. Aftab, Y. Mehmood, F. Ahmad, Y. Javed, M. Hu ssain, M. Afzal, "Mapping integrating the healthcare environment (IHE) to business process execution language for people (BPEL 4PPL)," IEEE 13th International Multitopic Conference, pp. 1-6, 2009.
16 T. Vacharasintopchai, W. Barry, V. Wuwongse, W. Kanok-Nukulchai, "Semantic Web Services Framework for Computational Mechanics," J. of Computing in Civil Engineering, Mar/April 21, pp. 65-77, 2007.
17 D. Booth et al., "Web Service Description Language (WSDL) Version 2.0," technical report, 2006.
18 "UDDI technical white paper," W3C, 2000.
19 D. Box et al., Simple Object Access Protocol (SOAP) 1.1, W3C note, 2000.
20 X. Wang, X. Pang, Y. Luo, "LBS-p: A LBS Platf orm Supporting Online Map Services," 2010 IEEE 72nd Vehicular Technology Conference Fall (VTC 2010-Fall), pp. 1-5, 2010.
21 Yim, J., "Introducing a decision tree-based indoor posi tioning technique," Expert Systems with Applications, Vol. 34, Issue 2, pp. 1296-1302, 2008.   DOI   ScienceOn
22 Bahl, P. and V. Padmanabhan, "RADAR:An In-Bui lding RF-Based User Location and Tracking System", INFOCOM 2000, pp. 775-784, Mar. 2000,
23 Harter, A. and A. Hopper, "A NewLocation Techn ique for the Active Office," IEEE Personal Communications, Vol. 4, No. 5, pp. 43-47, 1997.
24 Priyanthat, N., A. Chakraborty, and H. Balakrish nan, "The Cricket Location-Support System," Proc. of 6th ACM International Conference on Mobile Computing and Networking, Boston, MA, Aug. 2000.
25 Yim, J., Park, C., Joo, J., Jeong, S., "Extended Kalman Filter for Wireless LAN Based Indoor Positioning," Decision Support Systems 45, pp. 960-971, 2008.   DOI   ScienceOn
26 Sabre, http://www.sabre.com