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Self-Configured Fair Queueing

机译:自配置公平排队

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Many core-stateless mechanisms have been proposed to resolve the scalability problem in the core routers. However, they place considerable reliance on the edge routers or anterior core routers to mark correct flow information in corresponding packets. As a result, the condition of incorrect flow information may severely degrade the fairness among different flows. To achieve the robust fairness, an approximately core-stateless fair sharing mechanism, self-configured fair queuing (SCFQ) is proposed in this paper. This mechanism is mainly composed of two rate estimators; one estimator is used to estimate the arrival rate of the malicious flows that can be adopted to emend the incorrect flow information of the arrival packets. The other one is used to estimate the fair share rate. Computer Simulation is applied to compare the fairness of the SCFQ, core-stateless fair queuing (CSFQ), linear fair sharing estimation (LFSE), deficit round robin (DRR), and first in first out (FIFO). From the simulation results, the SCFQ is capable of supporting much better fairness than that of other compared mechanisms under a variety of traffic conditions. Also, the overhead of the SCFQ is low, so it is very suitable to be deployed in high-speed core routers.
机译:已经提出了许多无核状态机制来解决核心路由器中的可伸缩性问题。但是,它们非常依赖边缘路由器或前核心路由器,以在相应的数据包中标记正确的流信息。结果,不正确的流信息的状况可能严重降低不同流之间的公平性。为了实现鲁棒的公平性,本文提出了一种近似无状态的公平共享机制,即自配置公平排队(SCFQ)。该机制主要由两个速率估计器组成。一种估计器用于估计恶意流的到达率,可以采用该恶意流来修正到达分组的错误流信息。另一个用于估计公平份额。应用计算机仿真来比较SCFQ,无状态核心公平队列(CSFQ),线性公平共享估计(LFSE),赤字循环(DRR)和先进先出(FIFO)的公平性。从仿真结果来看,在各种流量条件下,SCFQ能够比其他比较机制更好地支持公平性。而且,SCFQ的开销很低,因此非常适合部署在高速核心路由器中。

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