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首页> 外文期刊>IEEE transactions on systems, man, and cybernetics. Part B, Cybernetics >Self-Adaptation in Next-Generation Internet Networks: How to React to Traffic Changes While Respecting QoS?
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Self-Adaptation in Next-Generation Internet Networks: How to React to Traffic Changes While Respecting QoS?

机译:下一代Internet网络中的自适应:如何在尊重QoS的同时对流量变化做出反应?

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摘要

Next-generation network infrastructure should support different services and several levels of quality of service (QoS) and resilience. The main requirements for such multiservice networks are flexibility, effective utilization of network resources, and ability to react to traffic demand changes with time. These requisites lead to the fact that next-generation networks should, to some extend, be "self-adapting", to cope with the need of promptly reacting to traffic demand changes, in an effective way, while taking into account the different requirements in terms of QoS. This paper sketches the reference network scenario and discusses the subject of self-adapting networks, attempting to focus on the key issues that need to be solved to realize future infrastructures. As a relevant example, this paper briefly reports a system developed by the authors' laboratory that implements a traffic engineering solution able to fulfil the mentioned requirements. This system could be regarded as a first concrete step toward the realization of self-adapting networks. In addition, some relevant results that were obtained either by simulation or by experiments on a real test bed are reported to discuss the main characteristics of such a system and assess the feasibility of the concept. Finally, the paper reviews the main hot issues that need to be addressed, in the authors' opinion, by the international research community
机译:下一代网络基础设施应支持不同的服务以及服务质量(QoS)和弹性的多个级别。这种多服务网络的主要要求是灵活性,网络资源的有效利用以及对流量需求随时间变化做出反应的能力。这些要求导致这样一个事实,即下一代网络应该在某种程度上“自适应”,以有效地应对流量需求变化的需求,同时考虑到网络中的不同要求。 QoS条款。本文概述了参考网络方案,并讨论了自适应网络的主题,试图着眼于实现未来基础架构需要解决的关键问题。作为一个相关示例,本文简要介绍了作者实验室开发的系统,该系统实现了能够满足上述要求的交通工程解决方案。该系统可以被认为是实现自适应网络的第一步。此外,还报告了通过仿真或通过在实际测试床上进行实验获得的一些相关结果,以讨论这种系统的主要特征并评估该概念的可行性。最后,本文回顾了国际研究界认为需要解决的主要热点问题。

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