End-to-End Service Monitoring for Zero-Touch Networks

Q3 Decision Sciences
Nathan F. Saraiva de Sousa;Danny Lachos Perez;Christian Esteve Rothenberg;Pedro Henrique Gomes
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引用次数: 8

Abstract

Autonomous management capability is the main pillar for paving Zero-touch Networks and efficiently deliver and operate use cases under the light of 5G requirements. To this end, Closed Control Loop (CCL), Intent-Based Networking (IBN), and Machine Learning (ML) are regarded as enablers to automatically executed all operational processes, ideally without human intervention. In this context, the ETSI Zero-touch network and Service Management (ZSM) framework specifies an end-to-end network and service management reference architecture for managing the full lifecycle of services. However, the whole process of service monitoring is not yet well-consolidated in ETSI ZSM. In this work, we propose the Monitoring Model Generator (MMG) component to automatically construct templates for service monitoring. MMG implements a novel methodology where service deployment models and standard information models are used as inputs to generate a high-level monitoring template, called Service Monitoring Model (SMM) and built upon an ontology-based schema based on the Resource Description Framework (RDF) vocabulary. We present a proof of concept implementation along with an experimental functional validation of the MMG and using RDF data in turtle syntax and format. The resulting monitoring models are then used to define actual monitoring KPIs and construct management policies in a control loop architecture.
零接触网络的端到端服务监控
自主管理能力是铺设零接触网络的主要支柱,并根据5G要求高效交付和运营用例。为此,闭环(CCL)、基于意图的网络(IBN)和机器学习(ML)被视为自动执行所有操作过程的推动者,理想情况下无需人工干预。在这种情况下,ETSI零接触网络和服务管理(ZSM)框架指定了一种端到端网络和服务的管理参考架构,用于管理服务的整个生命周期。然而,ETSI ZSM还没有很好地整合服务监控的整个过程。在这项工作中,我们提出了监控模型生成器(MMG)组件来自动构建用于服务监控的模板。MMG实现了一种新的方法,其中使用服务部署模型和标准信息模型作为输入来生成高级监控模板,称为服务监控模型(SMM),并建立在基于资源描述框架(RDF)词汇表的基于本体的模式之上。我们提出了一个概念验证的实现,以及MMG的实验功能验证,并使用海龟语法和格式的RDF数据。然后,生成的监控模型用于定义实际的监控KPI,并在控制循环体系结构中构建管理策略。
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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来源期刊
Journal of ICT Standardization
Journal of ICT Standardization Computer Science-Information Systems
CiteScore
2.20
自引率
0.00%
发文量
18
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