Abstract
In a Mobile IP network (MIPN), nodes move. When a node moves, it may go away from other nodes and this decreases available bandwidth and data rate and increases the propagation delay of links. Therefore, nodes’ movement can decrease data delivery and handoff latency; these will reduce network efficiency. Suppose that an MIPN uses an optimal routing algorithm and transmits data from a source node to a destination node optimally. Nodes’ movement can violate the optimality of the data transmission and this will waste bandwidth and network resources. In this paper we present a new parametric optimal unicast multichannel routing algorithm that computes a domain for a mobile node and this domain will hold the optimality of data transmission and prevent network efficiency failure. Our new method determines an optimal domain for each mobile node and does not allow nodes to exit from that optimal domain. Simulation results show that our new method increases data rate and network efficiency.

















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References
Al-Surmi I, Othman M, Ali BM (2012) Mobility management for ip-based next generation mobile networks: review, challenge and perspective. J Netw Comput Appl 351:295–315
Chen I-R, Wang D-C (2012) Regional registration-based mobile multicast service management in mobile ip networks. Wirel Pers Commun 54(4):635–649
Chuang M-C, Lee J-F (2013) Sf-pmipv6: a secure fast handover mechanism for proxy mobile ipv6 networks. J Syst Softw 86(2):437–448
Dobrota PV (2012) fha: a flexible and distributed home agent architecture for mobile-ip based networks. Inf Sci 211(30):68–80
Ford LR, Fulkerson DR (1958) Constructing maximal dynamic flows from static flows. Oper Res 6:419–433
Ford LR, Fulkerson DR (1958) A suggested computation for maximal multi-commodity network flows. Manag Sci 5(1):97–101
Heydarian M (2012) A high performance optimal dynamic routing algorithm with unicast multichannel qos guarantee in communication systems. J Supercomput 62(1):315–344
Heydarian M (2014) Dynamic distributed unicast routing: optimal incremental paths. J Supercomput 68:214–244
Heydarian M, Mogavi RH (2013) A new high performance approach: merging optimal multicast sessions for supporting multisource routing. J Supercomput 63(3):871–896
Isazadeh A, Heydarian M (2008) Optimal multicast multichannel routing in computer networks. Comput Commun 31(17):4149–4161
Isazadeh A, Heydarian M (2010) Traffic distribution for end-to-end qos routing with multicast multichannel services. J Supercomput 52(1):47–81
Isazadeh A, Heydarian M (2012) Distributed multicast multichannel paths. Telecommun Syst 50(1):55–70
Jung J-Y, Kang H-S, Lee J-R (2013) Performance evaluation of packet aggregation scheme for voip service in wireless multi-hop network. Ad Hoc Netw 11(3):1037–1045
Kim C, Hwang H, Baik J-W, Lee K-G (2013) Multicast based proxy mobile ipv6 for inter-domain handover. Math Comput Model 57(11–12):2863–2872
Lee J-H, Kim Y-D, Lee D (2011) Tunnel restraint to prevent out-of-order packets for route optimization in proxy mobile ipv6. Wirel Pers Commun 60(3):547–558
Lee K, Ryu S, Mun Y (2012) An enhanced cross-layer fast handover scheme for mobile ipv6 in the ieee 802.16e networks. J Supercomput 59(2):1055–1070
Matsuhashi Y, Shinagawa T, Ishii Y (2012) Transparent vpn failure recovery with virtualization. Future Gener Comput Syst 28(1):78–84
Oliveira CAS, Pardalos PM (2005) A survey of combinatorial optimization problems in multicast routing. Comput Oper Res 32(8):1953–1981
Rikli N-E, Almogari S (2013) Efficient priority schemes for the provision of end-to-end quality of service for multimedia traffic over mpls vpn networks. J King Saud Univ Comput Inf Sci 1(26):89–98
Ryu S, Lee K, Mun Y (2013) Optimized fast handover scheme in mobile ipv6 networks to support mobile users for cloud computing. J Supercomput 59(2):658–675
Sadhukhan P, Das PK, Mukherjee N (2013) A novel layer 3 based movement detection algorithm for improving the performance of mobile ip. Wirel Netw 19(4):431–442
Shin D-H (2012) What makes consumers use voip over mobile phones? Free riding or consumerization of new service. Telecommun Policy 36(4):311–323
Tuncer H, Kwasinski A, Shenoy N (2013) Performance analysis of virtual mobility domain scheme vs. ipv6 mobility protocols. Comput Netw 57(13):2578–2596
Vidal I, Garcia-Reinoso J, Soto I, de la Oliva A (2013) A solution for transparent mobility with route optimization in the ip multimedia subsystem. Comput Commun 36(17):1726–1744
Wu T-Y, Huang C-Y, Chao H-C (2005) A survey of mobile ip in cellular and mobile ad-hoc network environments. Ad Hoc Netw 3(3):351–370
Xue GL (2003) Optimal multichannel data transmission in computer networks. Comput Commun 26:759–765
Yi J, Adnane A, David S, Parrein B (2011) Multipath optimized link state routing for mobile ad hoc networks. Ad Hoc Netw 9(1):28–47
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Gholizadeh, S., Abdullah, A., Othman, M. et al. Optimized performance data transmission in Mobile IP networks. J Supercomput 70, 906–929 (2014). https://doi.org/10.1007/s11227-014-1267-x
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DOI: https://doi.org/10.1007/s11227-014-1267-x