Offloading Network Data Analytics Function to the Cloud with Minimum Cost and Maximum Utilization

Nazih Salhab, Rana Rahim, R. Langar, R. Boutaba
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引用次数: 1

Abstract

Cloud computing is being embraced more and more by telecommunication operators for on-demand access to computing resources. Knowing that 5G Core reference architecture is envisioned to be cloud-native and service-oriented, we propose, in this paper, offloading to the cloud, some of 5G delay-tolerant Network Functions and in particular the Network Data Analytics Function (NWDAF). The dynamic selection of cloud resources to serve off-loaded 5G-NWDAF, while incurring minimum cost and maximizing utilization of served next generation Node-Bs (gNBs) requires agility and automation. This paper introduces a framework to automate the selection process that satisfies resource demands while meeting two objectives, namely, cost minimization and utilization maximization. We first formulate the mapping of gNBs to 5G-NWDAF problem as an Integer Linear Program (ILP). Then, we propose an algorithm to solve it based on branch-cut-and-price technique combining all of branch-and-price, branch-and-cut and branch-and-bound. Results using pricing data from a public cloud provider (Google Cloud Platform), show that our proposal achieves important savings in cloud computing costs and reduction in execution time compared to other state-of-the-art frameworks.
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以最小的成本和最大的利用率将网络数据分析功能卸载到云端
电信运营商越来越多地采用云计算来按需访问计算资源。了解到5G核心参考架构被设想为云原生和面向服务的,我们在本文中建议将一些5G延迟容忍网络功能,特别是网络数据分析功能(NWDAF)卸载到云中。动态选择云资源为卸载的5G-NWDAF服务,同时降低成本并最大限度地利用所服务的下一代node - b (gnb),这需要敏捷性和自动化。本文介绍了一个自动化选择过程的框架,以满足资源需求,同时满足两个目标,即成本最小化和利用率最大化。我们首先将gnb与5G-NWDAF问题的映射表述为整数线性规划(ILP)。在此基础上,我们提出了一种基于分支分割和价格技术的求解算法,该算法将分支分割和价格、分支分割和分支分割结合起来。使用来自公共云提供商(Google云平台)的定价数据的结果表明,与其他最先进的框架相比,我们的建议在云计算成本和执行时间方面实现了重要的节省。
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