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Effective bandwidth of multiclass Markovian traffic sources and admission control with dynamic buffer partitioning

机译:多类马尔可夫交通量的有效带宽和动态缓冲区划分的接纳控制

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摘要

We investigate the statistical multiplexing and admission control for a partitioned buffer, where the traffic is generated by multiclass Markov-modulated fluid sources. Each of the sources has J (<1) classes at each state. The quality of service (QoS) is described by the packet loss probability for each class. The buffer is partitioned with J-1 thresholds to provide the J loss priorities. Extending the effective bandwidth concept to such a buffer system is a challenging topic. We find the minimal effective bandwidth in the asymptotic regime of large buffers and small loss probabilities by optimally setting the partition thresholds. The minimal effective bandwidth achieves efficient resource utilization and can be used to do admission control for heterogeneous multiclass Markovian sources in an additive way. The buffer partition thresholds are dynamically adjusted according to the input traffic load to guarantee QoS. Numerical analysis and simulation results verify the QoS satisfaction and the obvious improvement of resource utilization compared with previously published results, when the minimal effective bandwidth is used for resource allocation with the proposed dynamic buffer partitioning techniques.
机译:我们研究了分区缓冲区的统计复用和接纳控制,其中流量是由多类马尔可夫调制流体源生成的。每个源在每个状态下都有J(<1)个类。服务质量(QoS)由每个类别的丢包概率描述。缓冲区用J-1个阈值划分,以提供J个丢失优先级。将有效带宽概念扩展到这样的缓冲系统是一个具有挑战性的话题。通过最佳设置分区阈值,我们发现了在大缓冲区和小丢失概率的渐近状态下的最小有效带宽。最小有效带宽可实现有效的资源利用,并可用于以累加方式对异构多类马尔可夫源进行接纳控制。根据输入流量负载动态调整缓冲区分区阈值,以确保QoS。数值分析和仿真结果验证了QoS满意度和资源利用率与以前发布的结果相比,当使用建议的动态缓冲区划分技术将最小有效带宽用于资源分配时。

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