The communication network context in actual systems like 5G, cloud and IoT (Internet of Things), presents an ever-increasing number of users, applications, and services that are highly distributed with distinct and heterogeneous communications requirements. Resource allocation in this context requires dynamic, efficient, and customized solutions and Bandwidth Allocation Models (BAMs) are an alternative to support this new trend. This paper proposes the BAMSDN (Bandwidth Allocation Model through Software-Defined Networking) framework that dynamically allocates resources (bandwidth) for a MPLS (MultiProtocol Label Switching) network using a SDN (Software-Defined Networking)/OpenFlow strategy with BAM. The framework adopts an innovative implementation approach for BAM systems by controlling the MPLS network using SDN with OpenFlow. Experimental results suggest that using SDN/OpenFlow with BAM for bandwidth allocation does have effective advantages for MPLS networks requiring flexible resource sharing among applications and facilitates the migration path to a SDN/OpenFlow network.
翻译:5G、云和 IoT(物联网)等实际系统中的通信网络环境呈现出越来越多的用户、应用和服务,这些用户、应用和服务分布得越来越多,具有不同和不同的通信要求。在这方面,资源分配需要动态的、高效的和定制的解决方案以及宽幅分配模型(BAMs),这是支持这一新趋势的替代办法。本文提议BAMSDN(通过软件定义联网的宽幅线分配模型)框架,通过SDN/OpenFlow与OpenFlow一起控制MPLS网络,为MPLS(Multi Pon Label Switching)网络动态地分配资源(带宽线),利用SDN(软件定义网络)/与BM用于带宽分配的MSDN/OpenFlow网络,便利向SDN/OpenFlow网络的迁移路径。实验结果表明,使用SDN/OpenFlow与BAM进行带带宽分配,对MPLSLS网络具有有效的优势。