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Dynamic resource configuration in DiffiServ networks: control plane mechanisms and performance evaluation of a traffic control API

机译:DiffiServ网络中的动态资源配置:流量控制API的控制平面机制和性能评估

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Voice, video and multimedia applications are sensitive to the QoS provided by the underlying IP network. The DiffServ architecture offers a set of QoS mechanisms for IP networks. The "binding" of the applications QoS needs with the QoS features offered by the DiffServ networks is still an open problem. The simplest approach is to have a static configuration of QoS and therefore no direct interaction in the control plane between applications and QoS. We consider the advanced scenario, where the QoS mechanisms can be dynamically configured to follow the applications' need. For this scenario, a set of control plane interfaces needed for a whole end-to-end QoS architecture is defined. At the lower level, an internal interface ("Application Programming Interface"―API) in the QoS router is considered. This interface provides access to the DiffServ QoS mechanism available in a router and is used by the control logic running in the router itself. Then a QoS signaling protocol is considered, that allows external QoS clients to dynamically access the QoS services provided by the network. Finally the interaction of a session level signaling protocol (i.e., the SIP for IP telephony) with the QoS protocol is defined. A testbed implementation of the proposed architecture and a set of performance tests on the internal QoS API are reported.
机译:语音,视频和多媒体应用程序对基础IP网络提供的QoS敏感。 DiffServ体系结构为IP网络提供了一组QoS机制。应用程序QoS需求与DiffServ网络提供的QoS功能的“绑定”仍然是一个未解决的问题。最简单的方法是具有QoS的静态配置,因此应用程序和QoS之间在控制平面中没有直接交互。我们考虑了高级方案,可以动态配置QoS机制来满足应用程序的需求。对于这种情况,定义了整个端到端QoS体系结构所需的一组控制平面接口。在较低级别,考虑了QoS路由器中的内部接口(“应用程序接口” API)。此接口提供对路由器中可用的DiffServ QoS机制的访问,并由运行在路由器本身中的控制逻辑使用。然后考虑QoS信令协议,该协议允许外部QoS客户端动态访问网络提供的QoS服务。最后,定义了会话级信令协议(即,用于IP电话的SIP)与QoS协议的交互。报告了所提出的体系结构的测试平台实现以及对内部QoS API的一组性能测试。

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