Have a personal or library account? Click to login
Wlan–Based Indoor Localization Using Neural Networks Cover

Wlan–Based Indoor Localization Using Neural Networks

By: Fasiha Saleem and  Shurjeel Wyne  
Open Access
|Sep 2016

References

  1. SEYED, A.—ZEKAVAT, R—BUEHRER, R. M. : Handbook of Position Location: Theory, Practice and Advances, Wiley-IEEE Press, 2011.
  2. STELLA, M—RUSSO, M.—BEGUI, D. : F localization in indoor environment, Radioengineering 21 No. 2 (2012), 557-567.
  3. DJABRI, F.—LIU, R. : Wi-Fi-Based localization in dynamic indoor environment using a dynamic neural network, International Journal of Machine Learning and Computing 3 No. 1 (2013), 127-131.
  4. ALONSO, J. M. et al : Towards People Indoor Localization Combining WiFi and Human Motion Recognition, XV Congreso Espanol Sobre Tecnologas y Lgica Fuzzy (2010), 7-12.
  5. DAWES, B.—CHIN, K.-W. : A comparison of deterministic and probabilistic methods for indoor localization, The Journal of Systems and Software 84 No. 3 (2011), 442-451.
  6. DEASY, T. P.—SCANLON, W. G. : Stepwise algorithms for improving the accuracy of both deterministic and probabilistic methods in WLAN-based indoor user localization, International Journal of Wireless Information Networks 11 No. 4 (2005), 207-216.
  7. YIM, J. : Introducing a decision tree-based indoor positioning technique, Expert Systems with Applications 34 No. 2 (2008), 1296-1302.
  8. CHEN, Q.—LEE, D.-L.—LEE, W.-CH. : Rule-based WiFi localization methods, IEEE/IFIP International Conference on Embedded and Ubiquitous Computing (EUC) (2008), 252-258.
  9. MENGUAL, L.—MARBÁN, O.—EIBE, S. : Clustering-based location in wireless networks, Expert Systems with Applications 37 No. 9, 6165-6175, 2010.
  10. FENG, CH.—AU—W. S. A.—VALAEE—S.—TAN, Z. : Compressive sensing based positioning using RSS of WLAN access points, IEEE Proceedings of INFOCOM, 2010, 1-9.
  11. LIU, H.—DARABI, H.—BANERJEE, P—LIU, J. : Survey of wireless indoor positioning techniques and systems, IEEE Transactions on Systems, Man, and Cybernetics, Part C: Applications and Reviews 37 No. 6, 1067-1080, 2007.
  12. COMSA, C.-R.—LUO, J.—HAIMOVICHL, A.—SCHWARTZ, S. : Wireless localization using time difference of arrival in narrow-band multipath systems, in IEEE International Symposium on Signals, Circuits and Systems (ISSCS), 2007, 1-4.
  13. JEKABSONS, G.—KAIRISH, V.—ZURAVLYOV, V. : An Analysis of Wi-Fi Based Indoor Positioning Accuracy, Scientific Journal of Riga Technical University, Computer Sciences 47 No. 1, 131-137, 2011.
  14. CHEN, CH.-SH. : Artificial Neural Network for Location Estimation in Wireless Communication Systems, Sensor 12 No. 3, 27982817, 2012.
  15. SHAREEF, A.—ZHU, Y.—MUSAVI, M.—SHEN, B. : Comparison of MLP Neural Network and Kalman filter for Localization in wireless sensor netwoks, 19th IASTED International Conference on Parallel and Distributed Computing and Systems (2007), 323-330.
  16. TIAN, J.-P.—SHI, H.-CH. : Study of localization scheme base on neural network for wireless sensor networks, IET Conference on Wireless, Mobile and Sensor Networks (CCWMSN07) (2007), 64-67.
  17. WU, B.-F.—JEN, CH.-L.—CHANG, K.-CH. : Neural fuzzy based indoor localization by extending Kalman filtering with propagation channel modeling Kalman Filter, INTECH Open Access Publisher (2010).
  18. AHMAD, UY., : In-building localization using neural networks jour IEEE International Conference on Engineering of Intelligent Systems.
  19. FANG, S.-H.—LIN, T.-N. : Indoor location system based on discriminant-adaptive neural network in IEEE 802.11 environments, IEEE Transactions on Neural Networks 19 No. 11 (2008), 1973-1978.
  20. RAHMAN, M. S.—PARK, Y.—KIM, K.-D. : Localization of wireless sensor network using artificial neural network, IEEE 9th International Symposium on Communications and Information Technology (ISCIT) (2009), 639-642.
  21. SHAREEF, A.—ZHU, Y.—MUSAVI, M. : Localization using neural networks in wireless sensor networks, in Proceedings of the 1st International Conference on MOBILe Wireless Middle-WARE, Operating Systems, and Applications (2008), 639-642.
  22. DUDA, R. O.—HART, P. E.—STORK, D. G. : Pattern classification, John Wiley and Sons, 2000.
  23. LIN, T.-N.—LIN, P.-CH. : Performance comparison of indoor positioning techniques based on location fingerprinting in wireless networks, International Conference on Wireless Networks, Communications and Mobile Computing (2005), 1569-1574.
  24. Online www.mathworks.com/help/nnet.
  25. HERRANZ, F.—HERNANDEZ, N.—OCANA, M.—BERGASA, L. M.—ALONSO, D. : Intelligent Techniques applied to WiFi Localization Systems, Signal Journal 50 No. 45 (2009), 221-226.
  26. ROOS, T.—MYLLYMAKI, P.—TIRRI, H.—MISIKANGAS, P.—SIEVANEN, J. : A probabilistic approach to WLAN user location estimation, International Journal of Wireless Information Networks 9 No. 3 (2002), 155-164.
  27. RAHMAN, M. S.—PARK, Y.—KIM, K.-D. : RSS-based indoor localization algorithm for wireless sensor network using generalized regression neural network, Arabian Journal for Science and Engineering 37 No. 4 (2012), 1043-1053.
  28. YANG, J.—CHEN, Y. : Indoor localization using improved RSS-based lateration methods, IEEE Global Telecommunications Conference (GLOBECOM) (2009), 4506-4511.
  29. LEON-GARCIA, A.—: Probability, Statistics and Random Processes for Electrical Engineering, Pearson/Prentice Hall, 2008.
DOI: https://doi.org/10.1515/jee-2016-0044 | Journal eISSN: 1339-309X | Journal ISSN: 1335-3632
Language: English
Page range: 299 - 306
Submitted on: Nov 23, 2015
|
Published on: Sep 18, 2016
In partnership with: Paradigm Publishing Services
Publication frequency: 6 issues per year

© 2016 Fasiha Saleem, Shurjeel Wyne, published by Slovak University of Technology in Bratislava
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.