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Preserving Established Communications in IPv6 Multi-homed Sites with MEX

机译:使用MEX保留IPv6多宿主站点中已建立的通信

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摘要

A proper support for multimedia communications transport has to provide fault tolerance capabilities such as the preservation of established connections in case of failures. While multi-homing addresses this issue, the currently available solution based in massive BGP route injection presents serious scalability limitations, since it contributes to the exponential growth of the BGP table size. Alternative solutions proposed for IPv6 fail to provide equivalent facilities to the current BGP based solution. In this paper we present MEX (Muti-homing through Extension header) a novel proposal for the provision of IPv6 multi-homing capabilities. MEX preserves overall scalability by storing alternative route information in end-hosts while at the same time reduces packet loss by allowing routers to re-route in-course packets. This behavior is enabled by conveying alternative route information within packets inside a newly defined Extension Header. The resulting system provides fault tolerance capabilities and preserves scalability, while the incurred costs, namely deployment and packet overhead, are only imposed to those that benefit from it. An implementation of the MEX host and router components is also presented.
机译:多媒体通信传输的适当支持必须提供容错能力,例如在发生故障时保留已建立的连接。尽管多宿主解决了这个问题,但是基于大规模BGP路由注入的当前可用解决方案存在严重的可伸缩性限制,因为它有助于BGP表大小的指数增长。为IPv6提议的替代解决方案无法提供与当前基于BGP的解决方案等效的功能。在本文中,我们提出了MEX(通过扩展标头进行Muti-homing),以提供IPv6多宿主功能。 MEX通过将替代路由信息存储在终端主机中来保留总体可扩展性,同时通过允许路由器对路线中的数据包进行重新路由来减少数据包丢失。通过在新定义的扩展头内部的数据包中传递替代路由信息,可以启用此行为。最终的系统提供了容错功能并保留了可伸缩性,而所产生的成本(即部署和数据包开销)仅强加于受益于此的成本。还介绍了MEX主机和路由器组件的实现。

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