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Traffic shaping based on an exponential token bucket for quantitative QoS: implementation and experiments on DiffServ routers

机译:基于指数令牌桶的流量整形以实现定量QoS:在DiffServ路由器上的实现和实验

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Support for quantitative QoS guarantees and associated Per-Hop Behaviours in a Differentiated Services architecture hinges on the specification of appropriate traffic control mechanisms. However, recent and past studies of Internet traffic have shown that it is rather hard to find a global and representative traffic model, which at the same time remains simple enough to facilitate the implementation of such mechanisms. In some previous works, we have demonstrated that suitable traffic shaping of packet flows that are subsequently multiplexed at a network node can permit the application of the M/G/1 model for performance modelling and control of the aggregate traffic stream. Using some handy control laws derived from the M/G/1 model, quantitative QoS guarantees can be provisioned end-to-end, across a series of multiplexers. In this paper we present our experiences from embedding this traffic-shaping scheme, which we call exponential token bucket filtering (etbf), in routers based on the Linux operating system. Initially, we describe how the traffic-shaping scheme can fit in a Differentiated Services architecture as a mechanism applied on the traffic transmitted from the edge routers to the core of a DiffServ domain, so that traffic multiplexed at the core routers conforms to the M/G/1 model. The Linux traffic control architecture is then presented, which enables the implementation of a DiffServ framework as well as how this shaping scheme is implemented within this architecture. Finally, results from experiments in a lab environment consisting of such Linux edge routers are presented. These results are in-line with findings from experiments and simulations in our previous works and show that the performance at the core multiplexing nodes can be controlled according to the M/G/1 model.
机译:对差异化服务体系结构中的定量QoS保证和相关的逐跳行为的支持取决于适当的流量控制机制的规范。但是,最近和过去对Internet流量的研究表明,很难找到一个全局的,有代表性的流量模型,同时,该模型仍然足够简单,可以促进此类机制的实施。在先前的一些工作中,我们已经证明,随后在网络节点处多路复用的数据包流的适当流量整形可以允许将M / G / 1模型应用于性能建模和控制总流量。使用从M / G / 1模型派生的一些方便的控制法则,可以跨一系列多路复用器端到端地提供定量QoS保证。在本文中,我们介绍了在基于Linux操作系统的路由器中嵌入这种流量整形方案(称为指数令牌桶过滤(etbf))的经验。最初,我们描述流量整形方案如何适应差异化服务体系结构,这是一种应用于从边缘路由器传输到DiffServ域核心的流量的机制,以使在核心路由器处多路复用的流量符合M / G / 1型。然后介绍了Linux流量控制体系结构,该体系结构使DiffServ框架的实现以及在此体系结构内如何实现此整形方案成为可能。最后,介绍了在由此类Linux边缘路由器组成的实验室环境中的实验结果。这些结果与我们先前工作中的实验和仿真结果相符,并表明可以根据M / G / 1模型控制核心复用节点的性能。

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