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Experimental QoS performances of multimedia applications

机译:多媒体应用的实验QoS性能

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摘要

Several QoS provisioning mechanisms such as differentiated services (Diffserv) and integrated services (Intserv) have been recently devised and applied to bring quality of service (QoS) to the Internet. This paper studies end-end QoS performances of two QoS-demanding applications using different transport protocols. Both applications are tested in a real network environment, with end-end QoS provisioning by Intserv. They use QoSockets, a new extension of QoS specification and management to the Berkeley sockets. Their performance in terms of throughput, delay, jitter, and loss are measured under a number of test cases combining several factors: (1) single or multiple flows, with or without resource reservations; (2) normal, heavy, or overloaded scenarios; (3) uni- or bi-directional streams; and (4) TCP or UDP protocols. The experimental results show that the performance of two applications with the Intserv resource reservations are significantly improved, but not always guaranteed. It is also shown that UDP applications are able to get the requested QoS while TCP applications may not because of the nature of its bi-directional traffic flow. The paper provides detailed interpretation of the results and provides generic conclusions on application QoS.
机译:最近已经设计并应用了几种QoS设置机制,例如区分服务(Diffserv)和集成服务(Intserv),以将服务质量(QoS)带到Internet。本文研究了使用不同传输协议的两个QoS需求应用程序的最终QoS性能。这两个应用程序都在真实的网络环境中进行了测试,并通过Intserv进行了端到端QoS设置。他们使用QoSockets,这是QoS规范和管理对Berkeley套接字的新扩展。它们在吞吐量,延迟,抖动和损耗方面的性能是在结合多个因素的多个测试用例下进行测量的:(1)具有或不具有资源预留的单个或多个流; (2)正常,沉重或超载的情况; (3)单向或双向流; (4)TCP或UDP协议。实验结果表明,使用Intserv资源保留的两个应用程序的性能得到了显着提高,但并不能始终保证。还显示了UDP应用程序能够获得请求的QoS,而TCP应用程序可能由于其双向业务流的性质而无法获得请求的QoS。本文提供了对结果的详细解释,并提供了有关应用QoS的一般性结论。

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