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S3N - Smart Solution for Substation Networks, an Architecture for the Management of Communication Networks in Power Substations

S3N - الحل الذكي لشبكات المحطات الفرعية، بنية لإدارة شبكات الاتصالات في محطات الطاقة الفرعية
Authors: Erwin Alexander Leal; Juan Felipe Botero;

S3N - Smart Solution for Substation Networks, an Architecture for the Management of Communication Networks in Power Substations

Abstract

Hoy en día, la red de comunicaciones se ha convertido en un elemento esencial para la operación de cualquier tipo de organización o infraestructura, tal es el caso de las subestaciones de energía eléctrica. Dichas redes en particular, exigen altos niveles de disponibilidad y confiabilidad, ya que la subestación es un elemento clave en la cadena de generación y distribución de energía. Sin embargo, aunque la reciente modernización de la red introdujo nuevas características que permiten optimizar el funcionamiento de la subestación, la variedad de dispositivos que la integran (Dispositivos Electrónicos Inteligentes - IED: interruptores, switches, Protección y Control, Unidades de Fusión - MU, Switches de Red, IEEE 1588 Master Clock) y el enorme conjunto de protocolos a nivel de aplicación (SMV - Sample Measure Value, GOOSE - Generic Object Oriented Subtation Event, MMS - Manufacturing Message Specification, PTP - Precision Time Protocols, entre otros), aumentan la complejidad de la gestión. En este contexto, el Grupo de Investigación en Telecomunicaciones Aplicadas (GITA), ha decidido proponer el desarrollo de S3N - Solución Inteligente para Redes de Subestaciones. S3N se define como una arquitectura de red que introduce las novedosas Redes Definidas por Software (SDN) y tecnologías de virtualización, con el fin de simplificar la gestión de las redes de comunicación en las subestaciones eléctricas.

Aujourd'hui, le réseau de communication est devenu un élément essentiel au fonctionnement de tout type d'organisation ou d'infrastructure, tel est le cas des sous-stations électriques. Ces réseaux, en particulier, exigent des niveaux élevés de disponibilité et de fiabilité, car la sous-station est un élément clé de la chaîne de production et de distribution d'énergie. Cependant, bien que la modernisation récente du réseau ait introduit de nouvelles fonctionnalités permettant d'optimiser le fonctionnement de la sous-station, la variété des dispositifs qui l'intègrent (Appareils électroniques intelligents - IED : disjoncteurs, commutateurs, Protection et contrôle, Unités de fusion - MU, commutateurs réseau, IEEE 1588 Master Clock) et l'énorme ensemble de protocoles au niveau de l'application (SMV - Sample Measure Value, GOOSE - Generic Object Oriented Substation Event, MMS - Manufacturing Message Specification, PTP - Precision Time Protocols, entre autres) augmentent la complexité de la gestion. Dans ce cadre, le Groupe de Recherche Appliquée en Télécommunications (GITA), a décidé de proposer le développement de S3N - Smart Solution for Substation Networks. S3N est défini comme une architecture de réseau qui introduit les nouvelles technologies de réseaux définis par logiciel (SDN) et de virtualisation, afin de simplifier la gestion des réseaux de communication dans les sous-stations électriques.

Today, the communications network has become an essential element to the operation of any type of organization or infrastructure, such is the case of the electrical power substations. Such networks in particular, demand high levels of availability and reliability, as the substation is a key element in the chain of energy generation and distribution. However, although recent network modernization introduced new features that allow to optimize the operation of the substation, the variety of devices that integrate it (Intelligent Electronic Devices - IED: breakers, switches, Protection and Control, Merging Units - MU, Network Switches, IEEE 1588 Master Clock) and the huge set of application-level protocols (SMV - Sample Measure Value, GOOSE - Generic Object Oriented Substation Event, MMS - Manufacturing Message Specification, PTP - Precision Time Protocols, among others), increase the management complexity. In this context, the Applied Telecommunications Research Group (GITA), has decided to propose the development of S3N - Smart Solution for Substation Networks. S3N is defined as a network architecture that introduces the novel Software Defined Networks (SDN) and virtualization technologies, in order to simplify the management of communication networks in power substations.

اليوم، أصبحت شبكة الاتصالات عنصرًا أساسيًا لتشغيل أي نوع من التنظيم أو البنية التحتية، كما هو الحال في محطات الطاقة الكهربائية الفرعية. تتطلب هذه الشبكات على وجه الخصوص مستويات عالية من التوافر والموثوقية، حيث تعد المحطة الفرعية عنصرًا رئيسيًا في سلسلة توليد الطاقة وتوزيعها. ومع ذلك، على الرغم من أن تحديث الشبكة الأخير قدم ميزات جديدة تسمح بتحسين تشغيل المحطة الفرعية، فإن مجموعة متنوعة من الأجهزة التي تدمجها (الأجهزة الإلكترونية الذكية - العبوات الناسفة: القواطع، والمفاتيح، والحماية والتحكم، ووحدات الدمج - MU، ومفاتيح الشبكة، و IEEE 1588 Master Clock) ومجموعة ضخمة من البروتوكولات على مستوى التطبيق (SMV - قيمة قياس العينة، GOOSE - حدث المحطة الفرعية العامة الموجهة للكائنات، MMS - مواصفات رسالة التصنيع، PTP - بروتوكولات الوقت الدقيقة، من بين أمور أخرى)، تزيد من تعقيد الإدارة. في هذا السياق، قررت مجموعة أبحاث الاتصالات التطبيقية (GITA) اقتراح تطوير S3N - الحل الذكي لشبكات المحطات الفرعية. يتم تعريف S3N على أنها بنية شبكة تقدم الشبكات الجديدة المعرفة بالبرمجيات (SDN) وتقنيات المحاكاة الافتراضية، من أجل تبسيط إدارة شبكات الاتصالات في محطات الطاقة الفرعية.

Keywords

IEC 61850, Computer Networks and Communications, Network, Smart grid, [INFO] Computer Science [cs], Quantum mechanics, Telecommunications network, SDN, Security in SDN, Engineering, Virtualization, Architecture, Network switch, Embedded system, SDN Controllers, Computer network, [INFO.INFO-NI] Computer Science [cs]/Networking and Internet Architecture [cs.NI], Internet of Things and Edge Computing, Machine Learning for Networking, Communication, Physics, Network architecture, Software-Defined Networking and Network Virtualization, Security Challenges in Smart Grid Systems, Power (physics), Substation, Computer science, Software-Defined Networking, Distributed computing, Mobile Edge Computing, Reliability (semiconductor), Control and Systems Engineering, Power, Electrical engineering, Computer Science, Physical Sciences, Network element

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selected citations
These citations are derived from selected sources.
This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
BIP!Citations provided by BIP!
popularity
This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.
BIP!Popularity provided by BIP!
influence
This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
BIP!Influence provided by BIP!
impulse
This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network.
BIP!Impulse provided by BIP!
2
Average
Average
Average
Green