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Characterization and Optimization of Delay Guarantees for Real-Time Multimedia Traffic Flows in IEEE 802.11 WLANs

机译:IEEE 802.11 WLAN中实时多媒体业务流的延迟保证的表征和优化

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Due to the rapid growth of real-time applications and the ubiquity of IEEE 802.11 MAC as a layer-2 protocol for wireless local area networks (WLANs), it becomes increasingly important to support delay-based quality of service (QoS) in such WLANs. In this paper, we develop a simple and accurate enough analytical model for predicting the queueing delay of real-time multimedia traffic flows in non-homogeneous random access based WLANs. This leads to tractable analysis for meeting queueing delay specifications of a number of flows. In particular, we address the of whether the mean delays required by a set of User Datagram Protocol (UDP) flows supporting real-time multimedia traffic can be guaranteed in WLANs. Based on the model and feasibility analysis, we further develop an optimization technique to minimize the delays for the traffic flows. Moreover, we present a decentralized algorithm and report its implementation and present extensive simulation and experimental trace-based results to demonstrate the accuracy of our model and the performance of the algorithms.
机译:由于实时应用的快速增长以及IEEE 802.11 MAC作为无线局域网(WLAN)的第2层协议的普遍性,在此类WLAN中支持基于延迟的服务质量(QoS)变得越来越重要。 。在本文中,我们开发了一个简单而准确的分析模型,用于预测基于非均匀随机访问的WLAN中实时多媒体流量的排队延迟。这导致易于分析,以满足多个流的排队延迟规范。特别是,我们解决了在WLAN中是否可以保证一组支持实时多媒体流量的用户数据报协议(UDP)流所需的平均延迟的问题。基于模型和可行性分析,我们进一步开发了一种优化技术,以最大程度地减少交通流的延误。此外,我们提出了一种分散算法并报告了其实现,并给出了广泛的仿真和基于实验跟踪的结果,以证明我们模型的准确性和算法的性能。

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