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首页> 外文期刊>American journal of applied sciences >Hybrid Traffic Management Model for Multi-Protocol Label Switching Network | Science Publications
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Hybrid Traffic Management Model for Multi-Protocol Label Switching Network | Science Publications

机译:多协议标签交换网络的混合流量管理模型科学出版物

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摘要

> Problem statement: MPLS is a highly scalable, protocol agnostic and data-carrying mechanism. Traffic engineering is the major research area in MPLS due to the emerging requirements of MPLS and the internet usage. A major objective of traffic engineering is to minimize or eliminate high-loss situations. Another goal of traffic engineering is to balance the Quality of Service (QoS) against the cost of operating and maintaining the network. Approach: This study proposes a hybrid model for effective traffic management in the MPLS network which contains two models namely traffic flow analysis model and ant colony optimization based routing model. The traffic analysis model will analyses the traffic pattern and identifies the low load path. And the ACO is used for effective transmission in the low load path. Results: The proposed HTM provides lesser packet loss and less response time than existing routing protocol. Conclusion: This hybrid model enables traffic free environment in the congested MPLS network. The routing packet size of the proposed HTM is higher than ACO but comparing existing traditional routing protocol like OSPF and RIP, the packet size is very less.
机译: > 问题陈述: MPLS是一种高度可扩展的,与协议无关的数据承载机制。由于MPLS的新兴需求和Internet使用,流量工程是MPLS的主要研究领域。交通工程的主要目标是最大程度地减少或消除高损失情况。流量工程的另一个目标是在服务质量(QoS)与网络运行和维护成本之间取得平衡。 方法:本研究提出了一种用于MPLS网络中有效流量管理的混合模型,该模型包含两个模型,即流量分析模型和基于蚁群优化的路由模型。流量分析模型将分析流量模式并识别低负载路径。 ACO用于在低负载路径中进行有效传输。 结果:与现有的路由协议相比,拟议的HTM提供了更少的数据包丢失和更少的响应时间。 结论:此混合模型可在拥塞的MPLS网络中实现无流量环境。提议的HTM的路由数据包大小高于ACO,但与OSPF和RIP等现有的传统路由协议相比,数据包大小要小得多。

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