Efficient Algorithm for Vertical Handover in Heterogeneous Wireless Mobile Network

Zakir Ullah, Shazada Alamgir, Alamgir Khan, Salman Saleem, Imran Khan

Abstract


This paper present the new idea of Vertical handover for heterogeneous Wireless Networks, based on different parameters values i.e, available Bandwidth, received signal strength, mean number of request per unit time, mean number of calls served per unit time, power deception, power consumption, network condition, duration for mobile station to present in network .Three network selected for the handover, the vertical handover is take place at best resulted network between the available networks. In this article, provoked with facts and figure which done by vertical handoff procedure on mobile nodes But the crucial parameters which is battery power may also consider highly for certain mobile nodes, call blocking probability of networks are define to make decision for network with good quality, for the proposed algorithm experiment results are shown between the available networks and parameters, graphically illustrate the vertical handover to the specific network.

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References


Nasser, N., Hasswa, A., & Hassanein, H. (2006). Handoffs in fourth generation heterogeneous networks. IEEE Communications Magazine, 44(10), 96-103.

Hasswa, A., Nasser, N., & Hassanein, H. (2007). A seamless context-aware architecture for fourth generation wireless networks. Wireless Personal Communications, 43(3), 1035-1049.

Pawar, P., Wac, K., Van Beijnum, B. J., Maret, P., van Halteren, A., & Hermens, H. (2008, March). Context-aware middleware architecture for vertical handover support to multi-homed nomadic mobile services. In Proceedings of the 2008 ACM symposium on Applied computing (pp. 481-488). ACM.

Dekleva, S., Shim, J. P., Varshney, U., & Knoerzer, G. (2007). Evolution and emerging issues in mobile wireless networks. Communications of the ACM, 50(6), 38-43.

Ghaderi, M., & Boutaba, R. (2006). Call admission control in mobile cellular networks: a comprehensive survey. Wireless communications and mobile computing, 6(1), 69-93.

Deng, D. J., & Yen, H. C. (2005). Quality-of-service provisioning system for multimedia transmission in IEEE 802.11 wireless LANs. IEEE Journal on Selected Areas in Communications, 23(6), 1240-1252.

] Enrique Stevens-Navarro and Vincent W.S. Wong, Comparison between Vertical Handoff Decision

Algorithms for Heterogeneous Wireless Networks, 2006 IEEE.[6]. Mingxin Li, A Multi-step Vertical Handoff Mechanism for Cellular Multihop Networks, PM2HW2N’07, October 26, 2007, Chania, Crete Island, Greece. Copyright 2007 ACM.

Singhrova, A., & Prakash, N. (2007, September). A review of vertical handoff decision algorithm in heterogeneous networks. In Proceedings of the 4th international conference on mobile technology, applications, and systems and the 1st international symposium on Computer human interaction in mobile technology (pp. 68-71). ACM.

Joe, I. (2010). Sungchan Hong College of Information and Communications Hanyang University Seoul. Korea A Mobility-based Prediction Algorithm for vertical handover in hybrid wireless network.

Singhrova, A., & Prakash, N. (2012). Vertical handoff decision algorithm for improved quality of service in heterogeneous wireless networks. IET communications, 6(2), 211-223.

McNair, J., & Zhu, F. (2004). Vertical handoffs in fourth-generation multinetwork environments. IEEE Wireless Communications, 11(3), 8-15.

Chen, W. T., Liu, J. C., & Huang, H. K. (2004, July). An adaptive scheme for vertical handoff in wireless overlay networks. In Parallel and Distributed Systems, 2004. ICPADS 2004. Proceedings. Tenth International Conference on (pp. 541-548). IEEE.

Zhu, F., & McNair, J. (2004, March). Optimizations for vertical handoff decision algorithms. In Wireless Communications and Networking Conference, 2004. WCNC. 2004 IEEE (Vol. 2, pp. 867-872). IEEE.

Chen, W. T., & Shu, Y. Y. (2005, March). Active application oriented vertical handoff in next-generation wireless networks. In IEEE Wireless Communications and Networking Conference, 2005 (Vol. 3, pp. 1383-1388). IEEE.

Zhang, W. (2004, March). Handover decision using fuzzy MADM in heterogeneous networks. In Wireless communications and networking conference, 2004. WCNC. 2004 IEEE (Vol. 2, pp. 653-658). IEEE.

Song, Q., & Jamalipour, A. (2005, May). A network selection mechanism for next generation networks. In IEEE International Conference on Communications, 2005. ICC 2005. 2005 (Vol. 2, pp. 1418-1422). IEEE.




DOI: http://dx.doi.org/10.21015/vtcs.v12i1.430

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