CFP last date
20 May 2024
Reseach Article

Exploration of Existing Frameworks for Connecting Wireless Sensor Networks (WSNs) with Current Internet

by Renuka Roselin Kujur, A. K. Dwivedi
International Journal of Computer Applications
Foundation of Computer Science (FCS), NY, USA
Volume 86 - Number 4
Year of Publication: 2014
Authors: Renuka Roselin Kujur, A. K. Dwivedi
10.5120/14972-3164

Renuka Roselin Kujur, A. K. Dwivedi . Exploration of Existing Frameworks for Connecting Wireless Sensor Networks (WSNs) with Current Internet. International Journal of Computer Applications. 86, 4 ( January 2014), 14-17. DOI=10.5120/14972-3164

@article{ 10.5120/14972-3164,
author = { Renuka Roselin Kujur, A. K. Dwivedi },
title = { Exploration of Existing Frameworks for Connecting Wireless Sensor Networks (WSNs) with Current Internet },
journal = { International Journal of Computer Applications },
issue_date = { January 2014 },
volume = { 86 },
number = { 4 },
month = { January },
year = { 2014 },
issn = { 0975-8887 },
pages = { 14-17 },
numpages = {9},
url = { https://ijcaonline.org/archives/volume86/number4/14972-3164/ },
doi = { 10.5120/14972-3164 },
publisher = {Foundation of Computer Science (FCS), NY, USA},
address = {New York, USA}
}
%0 Journal Article
%1 2024-02-06T22:03:20.123946+05:30
%A Renuka Roselin Kujur
%A A. K. Dwivedi
%T Exploration of Existing Frameworks for Connecting Wireless Sensor Networks (WSNs) with Current Internet
%J International Journal of Computer Applications
%@ 0975-8887
%V 86
%N 4
%P 14-17
%D 2014
%I Foundation of Computer Science (FCS), NY, USA
Abstract

Wireless Sensor Network (WSN) is an emerging area of research and gaining worldwide attraction. Through this work, the objective is to explore all existing and ongoing research works related to connect an emerging network, i. e. , Wireless Sensor Networks (WSNs) with existing Current Internet. This paper evaluates different approaches to integrate WSNs into the Internet and outlines few set of challenges. As well as with this exploration, the objective is to provide an educts or conclusion on the most suitable solutions in this regard.

References
  1. Akyildiz, I. F. , Su, W. , Sankarasubramaniam, Y. and Cayirci, E. 2002. Wireless Sensor Networks: a Survey. Computer Networks, vol. 38, 393–422.
  2. Emara, K. A. A. E. S. 2009. Integrating Wireless Sensor Networks with IP-based Network. Master's Thesis. Department of Computer Science, Ain Shams University, Cairo.
  3. Zimmermann, H. April 1980. OSI Reference Model-The ISO Model of Architecture for Open Systems Interconnection. IEEE Transactions on Communications, vol. 28, no. 4, pp. 425-432. doi: 10. 1109/TCOM. 1980. 1094702.
  4. Zamalloa, M. Z. and Krishnamachari, B. 2003. Integrating Future Large-scale Wireless Sensor Networks with the Internet. USC Computer Science Technical Report CS03-792, Department of Electrical Engineering, University of Southern California, CA.
  5. IETF working group 6lowpan. IPv6 over Low power WPAN (6lowpan). Available at: http://www. ietf. org/html. charters/6lowpancharter. html.
  6. Available at: http://www. sciencedaily. com/releases/2006/02/060210090229. htm.
  7. IETF working group 6lowpan. IPv6 over low power wpan (6lowpan). Available at: http://www. ietf. org/html. charters/6lowpancharter. html.
  8. Dunkels, A. The Contiki Operating System. Available: https://www. sics. se/search/content/contiki.
  9. IEEE Computer Society. 2006. Part 15. 4: Wirless Medium Access Control (MAC) and Physical Layer (PHY) Specifications for Low-rate Wireless Personal Area Networks (WPANS) - IEEE std802. 15. 4-2006.
  10. Dunkels, A. , Alonso, J. , Voigt, T. , Ritter, H. and Schiller, J. 2004. Connecting Wireless Sensornets with TCP/IP Networks. In Proceedings of the Second International Conference on Wired/Wireless Internet Communications (WWIC2004).
  11. Hill, J. , Szewczyk, R. , Woo, A. , Hollar, S. , Culler, D. , and Pister, K. November 2000. System Architecture Directions for Networked Sensors. ACM SIGPLAN Notices, vol. 35, no. 11, pp. 93-104. Doi:10. 1145/356989. 356998.
  12. Jacobson, V. February 1990. Compressing TCP/IP Headers for Low-speed Serial Links. Internet Engineering Task Force. RFC 1144.
  13. Degermark, M. , Engan, M. , Nordgren, B. , and Pink, S. 1997. Low-loss TCP/IP header compression for wireless networks. ACM/Baltzer Journal on Wireless Networks.
  14. Pink, S. , Degermark, M. and Nordgren, B. February 1999. IP header compression. Internet Engineering Task Force. RFC 2507.
  15. Casner, S. and Jacobson, V. February 1999. Compressing IP/UDP/RTP Headers for Low-Speed Serial Links, Internet Engineering Task Force, RFC 2508.
  16. Intanagonwiwat, C. , Govindan, R. and Estrin, D. 2000. Directed diffusion: a scalable and robust communication paradigm for sensor networks. In Proceedings of the ACM's Conference on Mobile Computing and Networking (ACM MobiCom), pp. 56-67.
  17. Jacobson, V. February 1990. Compressing TCP/IP headers for low-speed serial links. Internet Engineering Task Force, RFC 1144.
  18. Liu, J. and Singh, S. 2001. ATCP: TCP for mobile ad hoc networks. IEEE Journal on Selected Areas in Communications, vol. 19 (7), pp. 1300-1315.
  19. Kim, J. -H, Kim, D. -H, Kwak, H. -Y and Byun, Y. -C. 2008. Integration between WSNs and Internet based on Address Internetworking for Web Services. Computing and Informatics, vol. 27, 707–718.
  20. Dunkels, A. , Alonso, J. and Voigt, T. January, 2004. Making TCP/IP viable for Wireless Sensor Networks. SICS Technical Report T2003:23, ISRN:SICS-T{2003/23-SE, Swedish Institute of Computer Science. Sweden. ISSN 1100-3154.
  21. Zamalloa, M. Z. and Bhaskar, K. 2003. Integrating Future Large-Scale Wireless Sensor Networks with the Internet. USC Computer Science Technical Report CS, pp. 03-792.
  22. Dunkels A. , Alonso, J. , Voigt T. , Ritter H. and Schiller J. , February, 2004. Connecting Wireless Sensornets with TCP/IP networks. In Proceedings of the Second International Conference on Wired/Wireless Internet Communications.
  23. Dai, H. and Han, R. November. 2004. Unifying Micro Sensor Networks with the Internet via Overlay Networking. In Proceedings of the IEEE Emnets-I, pp. 571–572.
  24. Mulligan, G. and Group, W. 2007. The 6LowPAN Architecture. In Proceedings of 4th Workshop on Embedded Networked Sensor, Cork, Ireland, pp. 78-82.
  25. Comcast, A. D. , Autonomica, J. I. , and Savola, P. April 2006. Operational Considerations and Issues with IPv6 DNS. RFC 4472. Internet Society.
Index Terms

Computer Science
Information Sciences

Keywords

Wireless Sensor Network IP-enabled wireless sensor networks IP IPv6 TCP/IP Networks Internet connectivity on wireless sensor networks.