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Optimal Quality of Service routing and admission control using the Utility Model

机译:使用实用新型的最佳服务质量路由和准入控制

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Real-time multimedia applications such as video and audio streaming, video conferencing and online collaboration are becoming increasingly popular. In order to guarantee effective support of many of these applications, the Internet must provide absolute Quality of Service (QoS) guarantees for such parameters as network bandwidth and end-to-end delay by incorporating session admission control, session routing, and resource reservation. In this article, we present the Utility Model for optimal routing and admission control (RAC) of a data network supporting sessions requiring QoS guarantees. This model maps the optimal RAC problem to a Multiple-choice Multi-dimension 0-1 Knapsack Problem (MMKP), a variation of the classical 0-1 Knapsack Problem. We also present a design for an optimal RAC system based on the Utility Model. This method uses the MMKP formulation of the optimal RAC problem to provide an integrated solution of the session routing, admission control and resource allocation problems. Our experiments show that optimal RAC using the MMKP formulation (OptRAC) would provide 7-16% more revenue than the revenue provided by a traditional RAC system (TradRAC).
机译:诸如视频和音频流,视频会议和在线协作之类的实时多媒体应用正变得越来越流行。为了保证对许多这些应用程序的有效支持,Internet必须通过合并会话允许控制,会话路由和资源预留,为诸如网络带宽和端到端延迟之类的参数提供绝对的服务质量(QoS)保证。在本文中,我们提出了一种实用数据模型,用于支持需要QoS保证的会话的数据网络的最佳路由和准入控制(RAC)。该模型将最佳RAC问题映射到多选多维0-1背包问题(MMKP),这是经典0-1背包问题的变体。我们还提出了基于实用新型的最佳RAC系统设计。此方法使用最佳RAC问题的MMKP公式来提供会话路由,准入控制和资源分配问题的集成解决方案。我们的实验表明,使用MMKP公式(OptRAC)的最佳RAC将比传统RAC系统(TradRAC)提供的收入多出7-16%。

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