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Network Performance Evaluation of IPv4-v6 Configured Tunnel and 6to4 Transition Mechanisms on Windows Server Operating Systems

机译:IPv4-V6配置隧道网络性能评估和Windows服务器操作系统上的6To4转换机制

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摘要

The potential exhaustion of IPv4 addresses initiated the development of IPv6. The new version of the Internet Protocol offers substantially more network and host addresses, however transition from current to the new version has been remarkably slow. There are multiple reasons for the sluggish transition: complexity and enormousity being the forerunners. Thus for the interim, various transition mechanisms have been developed. Each mechanism has its associated benefits and weaknesses. In this paper two such mechanisms, namely configured tunnel and 6to4 transition mechanism, have been empirically evaluated for performance. Both mechanisms are implemented on two different Windows Server operating systems and performance related metrics like throughput, delay, jitter and CPU usage of the transition end nodes are measured. The results obtained on the test-bed show that TCP/UDP throughput and jitter values of the two mechanisms are similar, but delay and CPU reading are significantly different depending on the choice of transition mechanism and operating system.
机译:IPv4地址的潜在耗尽启动了IPv6的开发。新版本的Internet协议提供了大量的网络和主机地址,但从当前转换到新版本的转换非常慢。迟缓的过渡有多种原因:复杂性和巨大是先行者。因此,对于临时,已经开发了各种转变机制。每个机制都有其相关的益处和缺点。在本文中,两种这样的机制,即配置了隧道和6To4转换机制,已经经过经验评估了性能。测量两个机制在两个不同的Windows服务器操作系统和性能相关的指标上实现了转换结束节点的吞吐量,延迟,抖动和CPU使用情况。在测试床上获得的结果表明,两种机制的TCP / UDP吞吐量和抖动值相似,但根据转换机制和操作系统的选择,延迟和CPU读数显着不同。

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