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Towards Internet QoS Provisioning Based on Generic Distributed QoS Adaptive Routing Engine

机译:基于通用分布式QoS自适应路由引擎的Internet QoS设置

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摘要

Increasing efficiency and quality demands of modern Internet technologies drive today's network engineers to seek to provide quality of service (QoS). Internet QoS provisioning gives rise to several challenging issues. This paper introduces a generic distributed QoS adaptive routing engine (DQARE) architecture based on OSPFxQoS. The innovation of the proposed work in this paper is its undependability on the used QoS architectures and, moreover, splitting of the control strategy from data forwarding mechanisms, so we guarantee a set of absolute stable mechanisms on top of which Internet QoS can be built. DQARE architecture is furnished with three relevant traffic control schemes, namely, service differentiation, QoS routing, and traffic engineering. The main objective of this paper is to (i) provide a general configuration guideline for service differentiation, (ii) formalize the theoretical properties of different QoS routing algorithms and then introduce a QoS routing algorithm (QOPRA) based on dynamic programming technique, and (iii) propose QoS multipath forwarding (QMPF) model for paths diversity exploitation. NS2-based simulations proved the DQARE superiority in terms of delay, packet delivery ratio, throughput, and control overhead. Moreover, extensive simulations are used to compare the proposed QOPRA algorithm and QMPF model with their counterparts in the literature.
机译:现代Internet技术不断提高的效率和质量要求,驱使当今的网络工程师寻求提供服务质量(QoS)。 Internet QoS设置带来了一些具有挑战性的问题。本文介绍了一种基于OSPFxQoS的通用分布式QoS自适应路由引擎(DQARE)体系结构。本文提出的工作的创新之处在于它不依赖于所使用的QoS体系结构,而且控制策略与数据转发机制分开,因此我们保证了可以在其上构建互联网QoS的一组绝对稳定的机制。 DQARE体系结构配备了三种相关的流量控制方案,即服务区分,QoS路由和流量工程。本文的主要目的是(i)提供用于区分服务的一般配置指南,(ii)规范化不同QoS路由算法的理论属性,然后介绍基于动态编程技术的QoS路由算法(QOPRA),以及( iii)提出用于路径分集开发的QoS多路径转发(QMPF)模型。基于NS2的仿真证明了DQARE在延迟,数据包传递率,吞吐量和控制开销方面的优越性。此外,大量的仿真被用于比较所提出的QOPRA算法和QMPF模型及其文献。

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