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Packet management techniques for measurement based end-to-end admission control in IP networks

机译:IP网络中基于测量的端到端准入控制的分组管理技术

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End-to-end Measurement Based connection Admission Control (EMBAC) mechanisms have been proposed to support real-time flows quality of service requirements over a Differentiated Services Internet architecture. The EMBAC basic idea is to decentralize the admission control decision, by requiring each individual user to probe the network path during flow setup, and by basing the accept/reject decision on the probing traffic statistics measured at the destination. In conformance with the differentiated services framework, routers are oblivious to individual flows and only need to serve data packets with a higher priority than probing traffic. In this paper, we build upon the observation that some form of congestion control of the probing packets queue at each router is a key factor to provide performance effective EMBAC operation. The original contribution of the paper is twofold. First, we provide a thorough investigation, by means of both approximate analytical modeling and extensive simulation, of an EMBAC scheme (denoted in the following EMBAC-PD), in which probing queues congestion control is enforced by means of a probing packet expiration deadline at each router. Second, by means of extensive performance evaluation, we show that EMBAC-PD can provide strict QoS guarantees even in the presence of very light probing overhead (few probing packets per flow setup). Most interesting, EMBAC-PD does not necessarily require long probing phases to accurately estimate the network load subject to statistical fluctuations, but can provide effective operation even in the presence of extremely short probing phase duration (e.g., few hundreds of ms, acceptable for practical applications).
机译:已经提出了基于端到端测量的连接准入控制(EMBAC)机制,以支持差异化服务Internet体系结构上的实时流服务质量要求。 EMBAC的基本思想是通过要求每个用户在流量建立过程中探查网络路径,并将接受/拒绝决策基于在目的地测量的探测流量统计信息来分散准入控制决策。根据差异化服务框架,路由器无需考虑单个流,只需要为数据包提供比探测流量更高的优先级。在本文中,我们基于以下发现:每个路由器上探测包队列的某种形式的拥塞控制是提供性能有效的EMBAC操作的关键因素。本文的原始贡献是双重的。首先,我们通过近似的分析模型和广泛的仿真,对EMBAC方案(在以下EMBAC-PD中表示)进行了彻底的研究,在该方案中,探测队列的拥塞控制是通过在每个路由器。其次,通过广泛的性能评估,我们证明EMBAC-PD即使在探测开销非常轻的情况下(每个流设置的探测包很少)也可以提供严格的QoS保证。最有趣的是,EMBAC-PD不一定需要较长的探测阶段来准确估计受统计波动影响的网络负载,但是即使存在极短的探测阶段持续时间(例如几百毫秒,对于实际操作也是可接受的),它也可以提供有效的操作应用程序)。

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