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HotPLUZ: A BGP-aware green traffic engineering approach

机译:HotPLUZ:一种支持BGP的绿色流量工程方法

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Green networking techniques aim to shut down the least utilized links and/or routers during off-peaks hours. In this paper, we show that such techniques negatively impact the operation of the Border Gateway Protocol (BGP). We quantify the impacts of two representative green approaches: (i) GAES, a green technique that modifies link weights, and (ii) ESOL, a green technique that does not involve link weights adjustments. Experiments over the Abilene, AT&T, GEANT and SURFnet topologies show that when using GAES, routing changes and the proportion of rerouted traffic, both of which affect BGP, are in the order of 108% and 141% greater than ESOL. Therefore, we propose Hot Potato Low UtiliZation (HotPLUZ), a green approach that takes hot-potato routing into account. HotPLUZ reroutes traffic from lowly utilized links and aggregate said traffic onto highly utilized links, whilst minimizing any changes to the corresponding egress router of a given destination. In addition, HotPLUZ considers link utilization in order to avoid packet loss and high latencies. Our experimental results indicate an overall saving of up to 21% under low network load.
机译:绿色网络技术旨在在峰值时间内关闭最少利用的链接和/或路由器。在本文中,我们表明这种技术对边界网关协议(BGP)的操作产生负面影响。我们量化了两种代表性绿色方法的影响:(i)GAE,一种改变链路权重的绿色技术,(ii)ESOL,一种不涉及链路权重调整的绿色技术。在阿比林的实验,AT&T,GEANT和Surfnet拓扑表明,当使用GAE时,路由变化和重新排出的流量的比例,两者都影响BGP的108%和141%大于ESOL。因此,我们提出了热马铃薯低利用率(Hotpluz),一种采用热马铃薯路由的绿色方法。 Hotpluz从低利用链接重新排出流量,并将所述流量聚合到高度利用的链接中,同时最大限度地减少给定目的地的相应出口路由器的任何更改。此外,Hotpluz还考虑了链接利用率,以避免数据包丢失和高延迟。我们的实验结果表明,在低网络负荷下总体节省高达21%。

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