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Endpoint Admission Control with Delay Variation Measurements for QoS in IP Networks

机译:IP网络中具有QoS时延变化的端点准入控制

摘要

In this paper we describe a novel Endpoint Admission Control scheme (EAC) for IP telephony. EAC mechanisms are driven by independent measurements taken by the edge nodes on a flow of packets injected in the network to probe the source to destination path. Our scheme is characterized by two fundamental features. First, it does not rely on any additional procedure in internal network routers other than the capability to apply different service priorities to probing and data packets. Second, the connection admission decision is based on the analysis of the probing flow delay variation statistics. Simulation results, which focus on a IP telephony scenario, show that, despite the lack of core routers cooperation, toll-quality performance figures (99th delay percentiles not greater than few ms per router) can be obtained even in severe overload conditions. Finally, a comparison with an EAC scheme driven by probe losses only, shows that the use of delay variation statistics as endpoint decision criterion is a key factor for EAC effectiveness.
机译:在本文中,我们描述了一种新颖的IP电话端点准入控制方案(EAC)。 EAC机制由边缘节点对网络中注入的数据包流进行独立测量来驱动,以探测源到目标路径。我们的方案具有两个基本特征。首先,除了将不同的服务优先级应用于探测和数据包的功能之外,它不依赖内部网络路由器中的任何其他步骤。其次,连接允许决策基于对探测流延迟变化统计数据的分析。针对IP电话场景的仿真结果表明,尽管缺乏核心路由器的合作,即使在严重的过载条件下,也可以获得通行费质量的性能指标(第99个延迟百分位数不超过每个路由器几毫秒)。最后,与仅由探头损耗驱动的EAC方案进行的比较表明,使用延迟变化统计数据作为端点决策标准是EAC有效性的关键因素。

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