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An economic framework for analysis of network architectures: SDN and MPLS cases

机译:网络架构分析的经济框架:SDN和MPLS案例

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As new networking architectures such as 5G start materializing in the next era of communication revolution, economic and operational facets of these future networks drive researchers to rethink about their capabilities of flexibility, agility, programmability, and cost-effectiveness. These are the main features to make networks like 5G (fifth-generation) possible and available for societies shortly because they are the fundamental catalysts to achieve economic success in a network. It is vital for network owners to analyze and understand economic aspects of a network architecture before deciding to invest in it. In this article, we introduce a framework utilizing an activity-based approach for the techno-economic analysis of network architectures. In particular, we perform an economic analysis of SDN (Software Defined Networking) technology and MPLS (Multiprotocol Label Switching) technology in order to understand how programmable networking, i.e., SDN technology, affects the network economics compared to traditional networking, i.e., MPLS technology. To this end, we firstly conduct a quantitative analysis exploiting an activity-based approach for CAPEX (Capital Expenditure) and OPEX (Operational Expenditure) calculations of a network. Secondly, we evaluate the architectures above concerning their economic performances using two metrics: Unit Service Cost Scalability metric and Cost-to-Service metric. Also, we present mathematical models to calculate certain cost parts of a network. Also, we compare different popular SDN control plane models, Centralized Control Plane (CCP), Distributed Control Plane (DCP), and Hierarchical Control Plane (HCP), to understand their economic impact with regards to the defined metrics. We use video as the service with different traffic patterns for the comparison. This work aims at being a useful primer to providing insights regarding which technology and control plane model(s) are appropriate for a specific service, i.e., video, for network owners to plan their investments.
机译:由于新的网络架构,如5G在下一次通信革命时代开始实现,这些未来网络的经济和运营方面驱动研究人员对其灵活性,敏捷性,可编程性和成本效益的能力重新思考。这些是使网络如5G(第五代)这样的网络,并且很快就可以为社会提供,因为它们是实现网络中经济成功的基本催化剂。在决定投资它之前,网络业主对网络业主分析和理解网络架构的经济方面至关重要。在本文中,我们介绍了一种利用基于活动的方法的网络架构技术经济分析的框架。特别是,我们对SDN(软件定义网络)技术和MPLS(多协议标签交换)技术进行了经济分析,以了解可编程网络,即SDN技术如何影响网络经济学与传统网络相比,即MPLS技术相比。 。为此,我们首先进行了分析,利用基于活动的CAPEX(资本支出)和OPEX(运营支出)计算的活动方法。其次,我们评估上面的架构关于他们使用两个指标的经济性能:单位服务成本可扩展性度量和成本到期度量。此外,我们提出了数学模型来计算网络的某些成本部分。此外,我们比较不同的流行SDN控制平面模型,集中控制平面(CCP),分布式控制平面(DCP)和分层控制平面(HCP),以了解其对所定义的指标的经济影响。我们使用视频作为服务使用不同的流量模式进行比较。这项工作旨在提供有关关于哪种技术和控制平面模型适用于特定服务,即视频,用于计划投资的技术和控制平面模型的有用底漆。

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