Tunnel-Based IPv6 Transition

Переход на IPv6 на основе туннелирования
Peng Wu, Yong Cui, Jianping Wu, Jiang Dong, C. Metz, Yiu Lee, Alain Durand
2013-03-01

IPv6 transitiondual stacktranslationtunnel-based frameworktunneling
IPv6 transition presents many challenges to the Internet community, and various solutions have been proposed, including dual stack, tunneling, and translation. Tunneling supports "like-to-like" IP connectivity across an "unlike" network, whereas translation supports "like-to-unlike" IP interconnectivity. No overarching strategy exists to address all possible scenarios. Because tunneling can keep the end-to-end model that the Internet is built on, the authors have developed a tunnel-based framework that solves the transition problems in backbone and access networks with different tunneling mechanisms.
1
A tunnel-based framework is developed to address IPv6 transition problems across backbone and access networks.
2
Different tunneling mechanisms within the framework are used to solve transition challenges in diverse network scenarios.
3
No single overarching strategy exists for all transition scenarios, motivating the proposed tunnel-based approach as a practical solution.
4
Tunneling offers "like-to-like" IP connectivity across "unlike" networks, distinct from translation approaches that enable "like-to-unlike" interconnectivity.
5
Tunneling preserves end-to-end IP connectivity during IPv6 transition, maintaining the Internet's end-to-end model.

Tunnel-based IPv6 transition framework for backbone and access networks

Using tunneling mechanisms to preserve end-to-end IP connectivity and solve IPv6 transition problems across heterogeneous networks

Publication Details
Publication Date
2013-03-01
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Authors
Peng Wu
Yong Cui
Jianping Wu
Jiang Dong
C. Metz
Yiu Lee
Alain Durand
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