QoS provisioning for real time services on DiffServ aware IPv6 optical network using IXP-2400 Intel Network

Kashif Saleem, N. Fisal, M. Zabidi
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引用次数: 1

Abstract

Providing Quality of Service (QoS) and Traffic Engineering (TE) capabilities in the internet is essential, especially in supporting the requirement of real- time traffic, as well as mission critical applications. Differentiated Services (DiffServ) is an emerging technology that provides QoS and traffic engineering features in Internet Protocol (IP) Network by programming the IXP2400 Intel Network Processor. Since the introduction of the network processors, there have been a number of network services developed based on the special-built, packet processing optimized programmable microprocessors. This paper is mainly concerns on how to deploy DiffServ in order to assess priority functionalities. A scheduling mechanism was developed on the IXP2400 network processor to provide QoS by maintaining priority of incoming packets based on criteria i.e. class of packets and traffic. The queuing mechanism improves the QoS of the traffic at the expense of some performance degradation. To reduce the performance degradation, a cache unit has been added into the operation of the QoS mechanism to cut down SRAM access during the lookup operation. A performance study was then carried out to evaluate the performance of the QoS mechanism after adding the cache unit. The overall speed is enhanced and delay is minimized. At the same time, the mechanism can be implemented on the ENP-2611 Evaluation Board to verify the functionality of the application on hardware.
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基于Intel IXP-2400网络的DiffServ感知IPv6光网络实时业务QoS提供
在互联网中提供服务质量(QoS)和流量工程(TE)能力是必不可少的,特别是在支持实时流量需求以及关键任务应用程序方面。差分服务(DiffServ)是一种新兴技术,它通过对Intel IXP2400网络处理器进行编程,为Internet Protocol (IP)网络提供QoS和流量工程特性。自从引入网络处理器以来,已经有许多基于特殊构建的、包处理优化的可编程微处理器开发的网络服务。本文主要关注如何部署diffserver以评估优先级功能。在IXP2400网络处理器上开发了一种调度机制,通过根据标准(即数据包和流量的类别)维护传入数据包的优先级来提供QoS。队列机制以一定的性能下降为代价提高了流量的QoS。为了减少性能下降,在QoS机制的操作中增加了一个缓存单元,以减少查找操作期间对SRAM的访问。然后进行了性能研究,以评估添加缓存单元后QoS机制的性能。整体速度得到提高,延迟被最小化。同时,该机制可以在ENP-2611评估板上实现,以验证应用程序在硬件上的功能。
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