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http://dx.doi.org/10.6109/jkiice.2015.19.1.97

A Study for Performance Evaluation of Distributed Mobility Management based on Proxy Mobile IPv6  

Wie, Sunghong (Dept. of Electricity and Electronic Engineering, The Cyber University of Korea)
Jang, Jaeshin (Dept. of Information and Communications Engineering, Inje University)
Abstract
Recently, due to an explosive growth of the internet traffic, the limitations of a current framework for a mobility management have been focused. The current centralized mobility management is prone to several problems and limitations: suboptimal routing, low scalability, signaling overhead, and a single point of failure. To overcome these problems and limitations, IETF is working about the distributed mobility management scheme that the centralized mobility functions of HA(Home Agents) are distributed to networks edges such as access routers. These distributions of mobility functions overcome the limitations of the centralized mobility managements and go with the trend of flat networks e.g. more simple network architecture. This paper analyzes the distributed mobility management based on Proxy Mobile IPv6 and demonstrates the performance superiority.
Keywords
DMM; Distributed Mobility Management; Performance Analysis; Performance Evaluation;
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1 Cisco Visual Networking Index: Global Mobile Data Traffic Forecast Update, 2013-2018, Feb. 2014. Available: http://www.cisco.com/c/en/us/solutions/collateral/service-provider/visual-networking-index-vni/white_paper_c11-520862.html.
2 RFC5213, Proxy Mobile IPv6, Internet Engineering Task Force(IETF), Aug. 2008.
3 K. S. Kong, W. J. Lee, Y. H. Han, M. K. Shin, and H. R. You, "Mobility Management for All-IP Mobile Networks: Mobile IPv6 vs. Proxy Mobile IPv6," IEEE Wireless Communications, vol. 15, no. 2, pp.36-45, April 2008.   DOI
4 J. C. Zuniga, C. J. Bernardos, A. de la Oliva, T. Melia, R. Costa, and A. Reznik, "Distributed mobility management: A standards landscape," IEEE Communications Magazine, vol. 51, no. 3, pp.80-87, March 2013.   DOI
5 D. H. Shin, D. Moses, M. Venkatachalam, and S. Bagchi, "Distributed mobility management for efficient video delivery over all-IP mobile networks: Competing approaches," IEEE Network, vol. 27, no. 2, March/April 2013.
6 draft-bernardos-dmm-pmip-03, A PMIPv6-based solution for Distributed Mobility Management, Internet Engineering Task Force(IETF), Jan. 2014.
7 J. H. Lee and T. M. Chung, "How much do we gain by introducing route optimization in proxy mobile IPv6 networks?," Annals of Telecommunications, vol. 65, no. 5-6, pp. 233-246,June 2010.   DOI   ScienceOn
8 F. V. Baumann and I. G. Niemegeers, "An evaluation of location management procedures," in Proceedings of the 3rd Annual International Conference on Universal Personal Communications, San Diego: CA, pp. 359-364, 1994.
9 C. Makaya and S. Pierre, "An analysis framework for performance evaluation of IPv6-based mobility management protocols," IEEE Transactions on Wireless Communications, vol. 7, no. 3, pp. 972-983, March 2008.   DOI   ScienceOn