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Performance analysis of buffer allocation schemes under MMPP and Poisson traffic with individual thresholds

机译:具有单独阈值的MMPP和Poisson流量下的缓冲区分配方案的性能分析

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Various buffer management and congestion control mechanisms have been proposed to support differentiated Quality-of-Service (QoS) requirements due to the heterogeneous properties of real-world network traffic and applications. Active Queue Management (AQM) with multiple thresholds, which starts dropping packets before the queue becomes full in order to notify incipient stages of congestion, is a promising buffer allocation mechanism. With the aim to capture the effects of heterogeneous traffic and justify the choice of appropriate parameters, this paper develops an original analytical model for a finite buffer queueing system with AQM under two heterogeneous classes of traffic which are modelled, respectively, by the non-bursty Poisson Process and bursty Markov-Modulated Poisson Process (MMPP). We derive the aggregated and marginal performance metrics including the mean queue length, response time, utilization, throughput, and loss probability. Extensive simulation experiments are used to validate the accuracy of the analytical model. Furthermore the model is adopted to evaluate the performance of AQM with heterogeneous traffic and under different working conditions.
机译:由于现实网络流量和应用程序的异构属性,已经提出了各种缓冲区管理和拥塞控制机制来支持不同的服务质量(QoS)要求。具有多个阈值的主动队列管理(AQM)是一种有前途的缓冲区分配机制,该机制在队列变满之前开始丢弃数据包,以通知初始阶段的拥塞。为了捕获异构流量的影响并证明选择适当参数的合理性,本文针对两种异构流量分别通过非突发性建模,针对带有AQM的有限缓冲区排队系统开发了原始的分析模型。泊松过程和突发马尔可夫调制泊松过程(MMPP)。我们得出汇总和边际性能指标,包括平均队列长度,响应时间,利用率,吞吐量和丢失概率。大量的仿真实验用于验证分析模型的准确性。此外,采用该模型来评估在不同工作条件下,异构流量下的AQM的性能。

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