An adaptive routing algorithm for Cognitive Packet Network infrastructure based on neural networks

D. K. D. Madubashitha, W. M. S. S Wijesinghe, K. A. S. R Kamaladiwela, M. G. P Ranaweera, J. Wijekoon, P. K. W Abeygunawardhana
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引用次数: 2

Abstract

This paper examines the possibility of introducing an intelligent routing protocol to the Internet, based on the Cognitive Packet Network (CPN) architecture with respect to the Quality of Service (QoS) delivered to the end users. In the present with increasing populations of countries it is clear that present infrastructure does not hold the sufficient capacity to deliver the expected level of service to the end users. Since there is an eminent need for a solution for improving the QoS in the Internet, this research focuses to provide a new network architecture which would improve the QoS, provide reliable and efficient service which can fulfill the ever growing Internet usage demand. This is achieved through a new network architecture known as CPN which is based on the basis of providing the best and user desired QoS. The main underlying technology behind the CPN will be a neural network. The neural network will be learning the changes in the network and adapt to the situation through the knowledge gathered. The packets will collectively learn about the network thus the load on the routers will be minimized. This mechanism completely replaces the need of a routing table thus making routing far more efficient when comparing to current routing protocols like Open Shortest Path First (OSPF). Final outcome of the research is coming to the conclusion that the future of the Internet is with the neural network based intelligent, dynamically adapting and learning CPN infrastructure instead of current packet switched network.
基于神经网络的认知分组网络自适应路由算法
本文探讨了引入智能路由协议到互联网的可能性,该协议基于认知分组网络(CPN)体系结构,与交付给最终用户的服务质量(QoS)相关。目前随着各国人口的增加,显然现有的基础设施没有足够的能力向最终用户提供预期水平的服务。由于迫切需要一种改善互联网服务质量的解决方案,本研究的重点是提供一种新的网络架构,以提高服务质量,提供可靠和高效的服务,以满足日益增长的互联网使用需求。这是通过称为CPN的新网络体系结构实现的,该体系结构基于提供最佳和用户期望的QoS。CPN背后的主要底层技术将是一个神经网络。神经网络将学习网络中的变化,并通过收集到的知识来适应这种情况。数据包将共同了解网络,因此路由器上的负载将被最小化。这种机制完全取代了对路由表的需求,因此与当前的路由协议(如开放最短路径优先(OSPF))相比,路由的效率要高得多。研究的最终结论是,互联网的未来是基于神经网络的智能、动态适应和学习的CPN基础设施,而不是目前的分组交换网络。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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