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Evaluation of 6to4 and ISATAP on a test LAN

机译:在测试局域网上评估6to4和ISATAP

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Coexistence of IPv4 and IPv6 bears problem of incompatibility, as IPv6 and IPv4 headers are different from each other. To counter this problem, three solutions are possible: a) making every device dual stack, b) translation, c) tunneling. Tunneling stands out as the best possible solution. Among the IPv6 tunneling techniques, this paper evaluates the performance of two recent IPv6 tunneling techniques: 6to4 and ISATAP. These protocols were implemented on real test bed setup, on Microsoft Windows (MS Windows XP and MS Windows Server 2003) and Linux operating systems. Five to six devices were used to setup the whole test bed. Each protocol was then implemented on the setup using specific configuration commands, available online at various sources. UDP based audio streaming, video streaming, and TCP based ICMP-ping traffic was run. Four different runs of IPv6 traffic were routed over the setup for both IPv6 tunneling protocols. The average of the data was taken to generate graphs and final results. The performance of these tunneling techniques has been evaluated through certain parameters, namely: throughput, end to end delay (E2ED), round trip time (RTT), and jitter.
机译:IPv4和IPv6的共存存在不兼容的问题,因为IPv6和IPv4标头互不相同。为了解决这个问题,可以采用三种解决方案:a)使每个设备成为双栈,b)转换,c)隧道传输。隧道技术是最好的解决方案。在IPv6隧道技术中,本文评估了两种最新的IPv6隧道技术的性能:6to4和ISATAP。这些协议是在Microsoft Windows(MS Windows XP和MS Windows Server 2003)和Linux操作系统上的实际测试平台设置上实现的。使用五到六个设备来设置整个测试台。然后,使用特定的配置命令在安装程序上实施每种协议,这些命令可从各种来源在线获得。运行了基于UDP的音频流,视频流和基于TCP的ICMP-ping通信。在两个IPv6隧道协议的设置中,路由了四个不同的IPv6流量运行。取数据的平均值以生成图形和最终结果。这些隧道技术的性能已通过某些参数进行了评估,这些参数包括:吞吐量,端到端延迟(E2ED),往返时间(RTT)和抖动。

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