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Initial Approach Toward Self-configuration and Self-optimization in IP Networks

机译:IP网络中自我配置和自我优化的初始方法

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摘要

The growing heterogeneity and scalability of Internet services has complicated, beyond human capabilities, the management of network devices. Therefore, a new paradigm called autonomic networking is being introduced to control, in an efficient and automatic manner, this complex environment. This approach aims to enhance network elements with capabilities that allow them to choose their own behavior for achieving high-level directives. This so called autonomic network element should be able to optimize its configuration, ensure its protection, detect/repair unpredicted conflicts between services requirements and coordinate its behavior with other network elements. In this paper, we present a research activity that investigates this new concept, and applies it to facilitate the configuration and the optimization of a multi-services IP network. This approach is a first step toward building a self-configured and self-optimized IP network that automatically supports the QoS requirements of heterogeneous applications without any external intervention. Different paradigms have been explored in order to model this behavior and to render network equipment autonomic. A laboratory prototype has been developed to highlight the autonomic behavior of the network to achieve heterogeneous QoS requirements of multimedia and data applications.
机译:Internet服务的异质性和可伸缩性不断增长,超出了人类的能力,使网络设备的管理变得复杂。因此,正在引入一种称为自主网络的新范例,以高效,自动的方式控制这种复杂的环境。这种方法旨在增强网络元素的功能,使他们可以选择自己的行为来实现高级指令。这种所谓的自主网络元素应该能够优化其配置,确保其保护,检测/修复服务需求之间无法预测的冲突以及与其他网络元素协调其行为。在本文中,我们提出了一项研究活动,对这一新概念进行了研究,并将其应用于促进多服务IP网络的配置和优化。这种方法是构建自配置和自优化IP网络的第一步,该网络可自动支持异构应用程序的QoS要求,而无需任何外部干预。为了模拟这种行为并使网络设备具有自主性,已经探索了不同的范例。已经开发了一个实验室原型,以突出网络的自主行为,以实现多媒体和数据应用程序的异构QoS要求。

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