Analysis of IPV6 Transition Technologies

Анализ технологий перехода на IPv6
Ali Albkerat, Biju Issac
2014-09-30

Dual-StackIPv6 transitionLANOPNET ModelerTCP delayTranslationTunnelingWANlatencyqueuing delaythroughput
Currently IPv6 is extremely popular with companies, organizations and Internet service providers (ISP) due to the limitations of IPv4. In order to prevent an abrupt change from IPv4 to IPv6, three mechanisms will be used to provide a smooth transition from IPv4 to IPv6 with minimum effect on the network. These mechanisms are Dual-Stack, Tunnel and Translation. This research will shed the light on IPv4 and IPv6 and assess the automatic and manual transition strategies of the IPv6 by comparing their performances in order to show how the transition strategy affects network behaviour. The experiment will be executed using OPNET Modeler that simulates a network containing a Wide Area Network (WAN) , a Local Area Network (LAN), hosts and servers. The results will be presented in graphs and tables, with further explanation. The experiment will use different measurements such as throughput, latency (delay), queuing delay, and TCP delay.
1
IPv6 adoption is driven by IPv4 limitations, motivating transition mechanisms to avoid abrupt change.
2
OPNET Modeler simulation of WAN/LAN hosts and servers is used to measure throughput, latency, queuing delay, and TCP delay.
3
Results are presented quantitatively (graphs and tables) to show how chosen transition strategies affect network performance metrics.
4
The study compares automatic and manual IPv6 transition strategies via simulation to assess performance impact.
5
Three IPv6 transition mechanisms—Dual-Stack, Tunneling, and Translation—are analyzed for their effects on network behavior.

IPv6 transition technologies (Dual-Stack, Tunneling, and Translation) as deployed in a simulated IPv4/IPv6 network (WAN, LAN, hosts, and servers)

Performance effects of automatic and manual IPv6 transition strategies on network behavior measured by throughput, latency (delay), queuing delay, and TCP delay

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2014-09-30
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Authors
Ali Albkerat
Biju Issac
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