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Designing BGP-based outbound traffic engineering techniques for stub ASes

机译:为存根AS设计基于BGP的出站流量工程技术

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摘要

Today, most multi-connected autonomous systems (AS) need to control the flow of their interdomain traffic for both performance and economical reasons. This is usually done by manually tweaking the BGP configurations of the routers on an error-prone trial-and-error basis. In this paper, we demonstrate that designing systematic BGP-based traffic engineering techniques for stub ASes are possible. Our approach to solve this traffic engineering problem is to allow the network operator to define objective functions on the interdomain traffic. Those objective functions are used by an optimization box placed inside the AS that controls the interdomain traffic by tuning the iBGP messages distributed inside the AS. We show that the utilization of an efficient evolutionary algorithm allows to both optimize the objective function and limit the number of iBGP messages. By keeping a lifetime on the tweaked routes, we also show that providing stability to the interdomain path followed by the traffic is possible. We evaluate the performance of solution based on traffic traces from two stub ASes of different sizes. Our simulations show that the interdomain traffic can be efficiently engineered by using not more than a few iBGP advertisements per minute.Our contribution in this paper is to demonstrate that by carefully thinking the design of the interdomain traffic engineering technique, stub ASes can engineer their outbound traffic over relatively short timescales, by exclusively tweaking their BGP routes, and with a minimal burden on BGP. Systematic BGP-based traffic engineering for stub ASes is thus possible at a very limited cost in terms of iBGP messages.
机译:如今,出于性能和经济方面的考虑,大多数多连接的自治系统(AS)需要控制其域间流量的流。通常,这是通过在容易出错的反复试验的基础上手动调整路由器的BGP配置来完成的。在本文中,我们证明为存根AS设计基于系统BGP的流量工程技术是可行的。我们解决此流量工程问题的方法是允许网络运营商定义域间流量的目标功能。这些目标函数由位于AS内的优化框使用,该优化框通过调整AS内分布的iBGP消息来控制域间流量。我们表明,利用有效的进化算法既可以优化目标函数,又可以限制iBGP消息的数量。通过在经过调整的路由上保留生命周期,我们还显示出可以为域间路径提供稳定的流量。我们基于来自两个不同大小的存根AS的流量跟踪评估解决方案的性能。我们的仿真表明,每分钟使用不超过几个iBGP通告就可以有效地设计域间流量。本文的目的是证明通过仔细考虑域间流量工程技术的设计,存根AS可以设计其出站流量通过专门调整BGP路由,在相对较短的时间范围内实现流量最小化,并且对BGP的负担最小。因此,就存根AS而言,基于iBGP消息的基于系统BGP的流量工程技术的成本非常有限。

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