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Design and Development of AI-Based Tourist Facilitator and Information Agent Cover

Design and Development of AI-Based Tourist Facilitator and Information Agent

Open Access
|Dec 2020

References

  1. [1] O. Alan Horowitz, and Z.-R. Peng, “Using global positioning system data to understand variations in path choice,” Transportation Research Record: Journal of the Transportation Research Board, vol. 1725, pp. 37–44, 2000. https://doi.org/10.3141/1725-0610.3141/1725-06
  2. [2] B. K. Moore, and S. Kumar, “The evolution of global positioning system (GPS) technology,” Journal of Science Education and Technology, vol. 11, no. 1, pp. 59–80, 2002. https://doi.org/10.1023/A:101399941500310.1023/A:1013999415003
  3. [3] D. W. and A. Weiss, “Accurate time and frequency transfer during common-view of a GPS satellite,” in 34th Annual Symposium on Frequency Control, 1980, pp. 334–346.
  4. [4] J. Ap, and K. F. Wong, “Case study on tour guiding: professionalism, issues and problems,” Tourism Management, vol. 22, no. 5, pp. 551–563, October 2001. https://doi.org/10.1016/S0261-5177(01)00013-910.1016/S0261-5177(01)00013-9
  5. [5] F. Yuan, J. M. Jose, G. Guo, L. Chen, H. Yu, and R. S. Alkhawaldeh, “Joint Geo-Spatial Preference and Pairwise Ranking for Point-of-Interest Recommendation,” 2016 IEEE 28th International Conference on Tools with Artificial Intelligence (ICTAI), 2016.10.1109/ICTAI.2016.0018
  6. [6] S. A. El-Seoud, and H. F. El-Sofany, “Mobile Tourist Guide – An Intelligent Wireless System to Improve Tourism, using Semantic Web,” International Journal of Interactive Mobile Technologies (iJIM), vol. 5, no. 4, pp. 4–10. https://doi.org/10.3991/ijim.v5i4.169510.3991/ijim.v5i4.1695
  7. [7] A. Ferreira, N. Leite, and A. Umanets, “GuideMe - A Tourist Guide with a Recommender System and Social Interaction,” Procedia Technology, vol. 17, pp. 407–414, 2014. https://doi.org/10.1016/j.protcy.2014.10.24810.1016/j.protcy.2014.10.248
  8. [8] Benoît Vignac, Gilles de Boysson and Carole Moreira Frederic de Pardieu. (2018, april) mtrip. [Online]. https://www.mtrip.com
  9. [9] H. A. Farhan, N. Al-Hawamdeh, N. Al-Okialy, and H. H. Owaied, “A Model for Intelligent Tourism Guide System,” Journal of Applied Sciences, vol. 11, no. 2, pp. 342–347, 2011. https://doi.org/10.3923/jas.2011.342.34710.3923/jas.2011.342.347
  10. [10] E. Cohen, “The tourist guide: The origins, structure and dynamics of a role,” Annals of Tourism Research, vol. 12, no. 1, pp. 5–29, 1985. https://doi.org/10.1016/0160-7383(85)90037-410.1016/0160-7383(85)90037-4
  11. [11] T. Glushkova, et al. “Implementation of a personal internet of thing tourist guide,” Journal of Intelligent Transportation Systems Technology Planning and Operations, 2018.
  12. [12] Smirnov, Alexander, Alexey Kashevnik, Andrew Ponomarev, Nikolay Teslya, Maksim Shchekotov, and Sergey I. Balandin. “Smart space-based tourist recommendation system.” In International Conference on Next Generation Wired/Wireless Networking, pp. 40–51, Springer, Cham, 2014.10.1007/978-3-319-10353-2_4
  13. [13] H. Gjoreski, V. Janko, B. Kaluža, A. Gradišek, M. Luštrek, and B. Cvetković, “e-Turist: An Intelligent Personalised Trip Guide,” Informatica, vol. 40, pp. 447–455, 2016.
  14. [14] touristeye. [Online]. http://blog.touristeye.com/
  15. [15] GuidePal (2018, April) [Online]. http://www.guidepal.com
  16. [16] triposo [Online]. https://www.triposo.com/
  17. [17] Foursquare (2017) [Online]. https://foursquare.com/
  18. [18] H. Soe, and M. M. Sein, “Tourist Guide Information System using Google Map and GPS,” International Journal of Advanced Engineering Research and Science, vol. 4, no. 3, March 2017. https://doi.org/10.22161/ijaers.4.3.3210.22161/ijaers.4.3.32
  19. [19] R. A. Abbaspour, and F. Samadzadegan, “Building A Context-Aware Mobile Tourist Guide System Base On A Service Oriented Architecture,” The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, vol. XXXVII, Part B4, Beijing 2008.
  20. [20] C. H. X. Wanga, “Design and Implementation of an Intelligent Tourist Guide System,” Advances in Computer Science Research, vol. 50, 2016.
  21. [21] B. H. Bahls, “Pedestrian Pal: A Route Recommendation System for the Android Mobile Phone,” Graduate Student Thesis, Dissertations, & Professional Papers, University of Montana, 2011.
  22. [22] L. Yu-Tzeng, and H. Tu-Kuang, and H. Fang-Ming, “Design and implementation of an intelligent recommendation system for tourist attractions: The integration of EBM model, Bayesian network and Google Maps,” Expert Systems with Applications, vol. 39, no. 3, pp. 3257–3264, 2012. https://doi.org/10.1016/j.eswa.2011.09.01310.1016/j.eswa.2011.09.013
  23. [23] E. Restrepo, J. A. Guzmán, and F. Moreno, “Recognition of highly frequented sets of tourist sites,” Ingeniería e Investigación, vol. 35, no. 1, pp. 71–78, 2015. https://doi.org/10.15446/ing.investig.v35n1.4406310.15446/ing.investig.v35n1.44063
  24. [24] A. Kashevnik, S. I. Balandin, and S. Laizane, Alexander Smirnov, “Intelligent Mobile Tourist Guide-Context-Based Approach and Implementation,” NEW2AN, 2013.
  25. [25] F. Jurčíček, et al. “Alex: A Statistical Dialogue Systems Framework,” in Sojka P., Horák A., Kopeček I., Pala K. (eds) Text, Speech and Dialogue. TSD 2014. Lecture Notes in Computer Science, vol. 8655, pp. 587–594, 2014, Springer, Cham. https://doi.org/10.1007/978-3-319-10816-2_7110.1007/978-3-319-10816-2_71
  26. [26] T. K. Dagba, and C. Boco, “A Text To Speech system for Fon language using Multisyn algorithm,” Procedia Computer Science, vol. 35, pp. 447–455, 2014. https://doi.org/10.1016/j.procs.2014.08.12510.1016/j.procs.2014.08.125
  27. [27] T. Baumann, et al. “Improving Domain-independent Cloud-Based Speech Recognition with Domain-Dependent Phonetic Post-Processing,” in Twenty-Eighth AAAI Conference on Artificial Intelligence, Hamburg, Germany, July 2014, pp. 1529–1536.
  28. [28] L. Rabiner, L. R. Rabiner, and B.-H. Juang, Fundamentals of Speech Recognition. PTR Prentice Hall, 1993.
  29. [29] C. Ardil, A. M. Sharifova, and R. Aida–Zade, “The Main Principles of Text-to-Speech Synthesis System,” World Academy of Science, Engineering and Technology, International Journal of Computer, Electrical, Automation, Control and Information Engineering, vol. 7, no. 3, 2010.
  30. [30] Google Cloud. [Online]. https://cloud.google.com/speech-to-text/
  31. [31] P. Leskinen, et al. “AATOS – A Configurable Tool for Automatic Annotation,” Lecture Notes in Computer Science, vol. 10318, Springer, Cham, 2017. https://doi.org/10.1007/978-3-319-59888-8_2410.1007/978-3-319-59888-8_24
  32. [32] P. D. Turney, and P. Pantel, “From frequency to meaning: Vector space models of semantics,” Journal of Artificial Intelligence Research, vol. 37, pp. 141–188, 2010. https://doi.org/10.1613/jair.293410.1613/jair.2934
  33. [33] E. Cambria, and B. White, “Jumping NLP curves: A review of natural language processing research,” IEEE Computational intelligence magazine, vol. 9, no. 2, pp. 48–57, 2014. https://doi.org/10.1109/MCI.2014.230722710.1109/MCI.2014.2307227
  34. [34] D. W. Goodall, “A new similarity index based on probability., “ Biometrics, vol. 22, no. 4, pp. 882–907, 1966. https://doi.org/10.2307/252808010.2307/2528080
  35. [35] R. Real, and J. M. Vargas, “The probabilistic basis of Jaccard’s index of similarity,” Systematic biology, vol. 45, no. 3, pp. 380–385, 1996. https://doi.org/10.1093/sysbio/45.3.38010.1093/sysbio/45.3.380
  36. [36] S. Niwattanakul, J. Singthongchai, and E. Naenudorn, “Using of Jaccard coefficient for keywords similarity,” in The 2013 IAENG International Conference on Internet Computing and Web Services (ICICWS’13), Hong Kong, 2013.
  37. [37] M. Gilleland, “Levenshtein distance, in three flavors,” 2009. Available: https://people.cs.pitt.edu/~kirk/cs1501/Pruhs/Spring2006/assignments/editdistance/Levenshtein%20Distance.htm
  38. [38] L. Yujian, and L. Bo, “A normalized Levenshtein distance metric,” IEEE transactions on pattern analysis and machine intelligence, vol. 29, no. 6, pp. 1091–1095, 2007. https://doi.org/10.1109/TPAMI.2007.107810.1109/TPAMI.2007.107817431306
  39. [39] C. -H. Chang, et al. “A survey of web information extraction systems,” IEEE transactions on knowledge and data engineering, vol. 18, no. 10, pp. 1411–1428, 2006. https://doi.org/10.1109/TKDE.2006.15210.1109/TKDE.2006.152
  40. [40] D. Glez-Peña, et al. “Web scraping technologies in an API world,” Briefings in Bioinformatics, vol. 15, no. 5, pp. 788–797, September 2014. https://doi.org/10.1093/bib/bbt02610.1093/bib/bbt02623632294
  41. [41] L. Lan, and W. Zhenxin, “Study on web harvest methods in web archive,” Library Journal, vol. 8, 2009.
  42. [42] J. Hedley, “jsoup Java HTML Parser, with best of DOM, CSS, and jquery,” 2009.
  43. [43] jarvest jawa web harverting library. [Online]. https://sing.ei.uvigo.es/jarvest/
  44. [44] C. Ball, “Screen-scraping with WWW: Mechanize,” 2003.
  45. [45] L. Richardson. (2018) Beautiful soup documentation. Available: https://www.crummy.com/software/BeautifulSoup/bs3/documentation.html
  46. [46] V. G. Nair, Getting Started with Beautiful Soup. Packt Publishing Ltd, 2014.
  47. [47] F. McCown, Building a Web Crawler in Python., 2010.
  48. [48] W.-t. Yih, J. Goodman, and V. R. Carvalho, “Finding advertising keywords on web pages,” in Proceedings of the 15th international conference on World Wide Web, pp. 213–222, 2006.10.1145/1135777.1135813
DOI: https://doi.org/10.2478/acss-2020-0014 | Journal eISSN: 2255-8691 | Journal ISSN: 2255-8683
Language: English
Page range: 124 - 133
Published on: Dec 28, 2020
Published by: Riga Technical University
In partnership with: Paradigm Publishing Services
Publication frequency: 1 issue per year

© 2020 Adeel Munawar, Syed Ali Raza, Awais Qasim, published by Riga Technical University
This work is licensed under the Creative Commons Attribution 4.0 License.