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The Forwarding on Gates architecture: Flexible placement of QoS functions and states in internetworks

机译:Gates转发架构:QoS功能和状态在Internetworks中的灵活放置

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摘要

A main driver of Future Internet applications and services is Quality of Service (QoS). Current Internet technologies provide no suitable QoS support for end-to-end connections due to several drawbacks of IntServ and DiffServ. In this article, we propose the “Forwarding on Gates” (FoG) architecture, which answers the QoS questions by the help of a new inter-network architecture. It applies its own new network protocol, which was designed to handle IntServ and DiffServ in an integrated way. FoG supports resource reservations for QoS guarantees in IntServ scenarios and prioritized traffic in DiffServ scenarios as well as a combination of both. As core advantage, the QoS support of FoG works in a scalable way by allowing a network to move QoS states and delegate decisions about the QoS usage to the entities demanding for QoS. This article describes the architecture, its network protocol, and solutions for interoperability with current networks. The evaluation includes theoretical descriptions of network configurations for a use case not supported by IP. Moreover, simulations show that the protocol overhead is comparable to IPv6, although packets can select QoS explicitly. Measured routing graph sizes for various setups show the flexibility of the FoG architecture.
机译:未来Internet应用程序和服务的主要驱动力是服务质量(QoS)。由于IntServ和DiffServ的一些缺点,当前的Internet技术没有为端到端连接提供合适的QoS支持。在本文中,我们提出了“门上转发”(FoG)架构,该架构通过新的网络间架构来回答QoS问题。它采用了自己的新网络协议,该协议旨在以集成方式处理IntServ和DiffServ。 FoG在IntServ场景中支持QoS保证的资源预留,在DiffServ场景中以及两者的结合中支持优先流量。作为核心优势,FoG的QoS支持通过允许网络移动QoS状态并将有关QoS使用的决策委派给需要QoS的实体,以可伸缩的方式工作。本文介绍了体系结构,其网络协议以及与当前网络的互操作性的解决方案。评估包括IP不支持的用例的网络配置的理论描述。此外,仿真表明,尽管数据包可以明确选择QoS,但协议开销与IPv6相当。各种设置下测得的路由图大小显示了FoG架构的灵活性。

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