首页> 外文会议>28th National Radio Science Conference >QoS adaptation in real time systems based on CBWFQ
【24h】

QoS adaptation in real time systems based on CBWFQ

机译:基于CBWFQ的实时系统中的QoS适应

获取原文

摘要

The evolution of the World Wide Web (WWW) service has incorporated new distributed multimedia conference applications, powering a new generation of e-services development, and allowing improved interactivity [1]. Most common interactive real-time applications are fault-tolerant but suffer from QoS limitations; low-latency requirements and reliability are cumulative to conference success [2], it may easily absorb all network resources and the subjective quality sensed by users would remain poor if the available resources are used indiscriminately. This paper simulates a network infrastructure design that classifies and prioritizes the real-time traffic in order to improve the performance of the real-time applications, taking into consideration of the performance of non real-time applications. This infrastructure has been designed to present a typical network of a university campus, so that in this way it can be implemented in any campus. In this paper 3 scenarios are suggested first before enabling any QoS mechanism at the routers, second use class based weighted fair queuing using low latency queue (CBWFQ-LLQ) for video traffic and last scenario apply CBWFQ-LLQ for voice. The simulation is conducted using OPNET IT Guru. Simulation results demonstrated that applying LLQ for voice improves the performance of overall real-time and non real-time application.
机译:万维网(WWW)服务的发展已经融入了新的分布式多媒体会议应用程序,为新一代的电子服务开发提供了动力,并提高了交互性[1]。大多数常见的交互式实时应用程序都具有容错能力,但存在QoS限制。低延迟要求和可靠性是会议成功的累积[2],如果不加选择地使用可用资源,它很容易吸收所有网络资源,并且用户感觉到的主观质量仍然很差。本文模拟了一种网络基础结构设计,该设计对实时流量进行分类和优先级划分,以提高实时应用程序的性能,同时考虑到非实时应用程序的性能。该基础结构旨在呈现大学校园的典型网络,因此可以在任何校园中实施。在本文中,首先提出了3种方案,然后在路由器上启用任何QoS机制,其次提出了针对视频流量使用低延迟队列(CBWFQ-LLQ)的基于使用类别的加权公平排队,最后一种方案将CBWFQ-LLQ应用于语音。该模拟是使用OPNET IT Guru进行的。仿真结果表明,将LLQ应用于语音可以提高整体实时和非实时应用程序的性能。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号