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An examination of next generation IP migration techniques: Constraints and evaluation

机译:下一代IP迁移技术的考察:约束和评估

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IP Next Generation (IPng) or IPv6 engineered by IETF is the successor of IPv4, the contemporary version of Internet Protocol. IPv6 is designed to solve the long term performance, reliability and scalability problems of IPv4. Although IPv6 implementation is yet to attain a maturity level, its success will ultimately depend on its implementation in a broader perspective. The IPv6 network migration is seen as an intricate daunting task impeding its evolution. Nevertheless with emergence of new IPv6 migration techniques, its complete integration with current IP networks seems to be achievable in near future. This paper attempts to examine current IP transitioning techniques and outlines the key deployment issues, challenges and migration paths. The paper also makes an empirical evaluation of three most commonly used transition mechanisms namely Dual Stack, Automatic 6to4 Tunneling and Manual 6in4 Tunneling and makes a comparison of performance metrics with native IPv6 environment. The simulation results are significant and give an insight about choosing best transition technique and an idea about network migration and capacity planning. The simulation-based comparison has been carried using OPNET (ver. 14.5) simulation framework.
机译:由IETF设计的IP下一代(IPng)或IPv6是Internet协议的现代版本IPv4的继承者。 IPv6旨在解决IPv4的长期性能,可靠性和可伸缩性问题。尽管IPv6的实现尚未达到成熟水平,但其成功最终将取决于更广泛的角度来看其实现。 IPv6网络迁移被视为阻碍其发展的艰巨任务。然而,随着新的IPv6迁移技术的出现,在不久的将来似乎可以实现与当前IP网络的完全集成。本文试图检查当前的IP过渡技术,并概述了关键的部署问题,挑战和迁移路径。本文还对三种最常用的过渡机制(双堆栈,自动6to4隧道和手动6in4隧道)进行了经验评估,并将性能指标与本机IPv6环境进行了比较。仿真结果非常重要,并为选择最佳过渡技术提供了见识,并为网络迁移和容量规划提供了思路。基于仿真的比较是使用OPNET(14.5版)仿真框架进行的。

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