Communications in flexible supervisor for laboratory research in renewable energy
In laboratories new systems are created where researchers hope to obtain improved functions at a reasonable cost. In them, specialists need efficient tools that offer better performance and flexible features. This paper designs and implements a SCADA system for GERA laboratory (Scientific Group for...
- Autores:
-
Nuñez-Alvarez, J. R.
Benítez-Pina, I. F.
Llosas Albuerne, Yolanda
- Tipo de recurso:
- Article of journal
- Fecha de publicación:
- 2020
- Institución:
- Corporación Universidad de la Costa
- Repositorio:
- REDICUC - Repositorio CUC
- Idioma:
- eng
- OAI Identifier:
- oai:repositorio.cuc.edu.co:11323/6543
- Acceso en línea:
- https://hdl.handle.net/11323/6543
https://repositorio.cuc.edu.co/
- Palabra clave:
- Renewable energy
Communications
Flexible supervisor
- Rights
- openAccess
- License
- CC0 1.0 Universal
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dc.title.spa.fl_str_mv |
Communications in flexible supervisor for laboratory research in renewable energy |
title |
Communications in flexible supervisor for laboratory research in renewable energy |
spellingShingle |
Communications in flexible supervisor for laboratory research in renewable energy Renewable energy Communications Flexible supervisor |
title_short |
Communications in flexible supervisor for laboratory research in renewable energy |
title_full |
Communications in flexible supervisor for laboratory research in renewable energy |
title_fullStr |
Communications in flexible supervisor for laboratory research in renewable energy |
title_full_unstemmed |
Communications in flexible supervisor for laboratory research in renewable energy |
title_sort |
Communications in flexible supervisor for laboratory research in renewable energy |
dc.creator.fl_str_mv |
Nuñez-Alvarez, J. R. Benítez-Pina, I. F. Llosas Albuerne, Yolanda |
dc.contributor.author.spa.fl_str_mv |
Nuñez-Alvarez, J. R. Benítez-Pina, I. F. Llosas Albuerne, Yolanda |
dc.subject.spa.fl_str_mv |
Renewable energy Communications Flexible supervisor |
topic |
Renewable energy Communications Flexible supervisor |
description |
In laboratories new systems are created where researchers hope to obtain improved functions at a reasonable cost. In them, specialists need efficient tools that offer better performance and flexible features. This paper designs and implements a SCADA system for GERA laboratory (Scientific Group for Applied Renewable Energy at the University of Oriente) adjusted to the inherent characteristics of flexibility and functionality required in research centers. All these features are supported in an efficient communication system with the implementation of various protocols and novel solutions for this type of systems for monitoring and control. It verifies and validates the system for formal methods. |
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2020 |
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2020-07-13T18:43:11Z |
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2020-07-13T18:43:11Z |
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2020 |
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http://purl.org/coar/resource_type/c_2df8fbb1 |
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1757-8981 1757-899X |
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https://hdl.handle.net/11323/6543 |
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doi:10.1088/1757-899X/844/1/012016 |
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Corporación Universidad de la Costa |
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1757-8981 1757-899X doi:10.1088/1757-899X/844/1/012016 Corporación Universidad de la Costa REDICUC - Repositorio CUC |
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dc.language.iso.none.fl_str_mv |
eng |
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eng |
dc.relation.references.spa.fl_str_mv |
[1] Valencia G, Nuñez J and Duarte J 2019. Multiobjective Optimization of a Plate Heat Exchanger in a Waste Heat Recovery Organic Rankine Cycle System for Natural Gas Engines. Entropy. 21(7), 655; https://doi.org/10.3390/e21070655 [2] Pérez López E 2015. Los sistemas SCADA en la automatización industrial. Tecnología en Marcha. vol. 28, no. 4, pp. 3–14 [3] Romero A, Marín A and Jiménez J. A 2014. SCADA System for Detection of Explosive Atmospheres in Underground Coal Mines Through Wireless Sensor Network. IEEE Latin America Transactions. vol. 12, no. 8, pp. 1398-1403 [4] Minchala L. I, Sánchez C, Yungaicela N, Mora A and Mata J. A 2016. Comparative Study Of Black – Box Models For Cement Fineness Prediction Using SCADA Measurement of a Closed Circuit Grinding. IEEE Latin America Transactions. vol. 14, no. 2, pp. 673-680 [5] Vega-de la Cruz L, Lao León Y, and Pérez Pravia, M 2016. Redes de Petri en la Determinación de Puntos Críticos para el Control Interno. Revista Universidad y Sociedad. 8(4), 219-226 [6] Castellanos J. S and Solaque L. E 2010. Modeling with Petri Nets and Implementation with Grafcet of a Flexible Manufacturing System with Concurrent Processes and Shared Resource. Ciencia e Ingeniería Neogranadina, Vol. 20-1, pp. 61-75 [7] David R and Alla H 2010. Discrete, Continuous and Hybrid Petri Nets. Editorial Berlin Springer. Book. 337 pages. ISBN 978-3-642-10669-9 [8] Silva M and Recalde L 2007. Redes de petri continuas: Expresividad, análisis y control de una clase de sistemas lineales conmutados. IEEE Latin America Transactions vol 4, no. 3, pp. 5-33 [9] Quesada J. Carlos, Flores E, Bautista J and Quezada V 2014. Diseño e implementación de un sistema de control y monitoreo basado en HMI-PLC para un pozo de agua potable. Ingeniería, Investigación y Tecnología. vol.15 no.1, pp.41-50 [10]Acebes L. F, Merino A, Alves R and Prada C 2009. Análisis en Línea del Estado Energético de Plantas Azucareras. Revista Iberoamericana de Automática e Informática Industrial, [S.l.], v. 6, n. 3, p. 68-75. ISSN 1697-7920 [11] Rendón A, Fuerte C. R and Calderón J. G 2015. State Estimation of Electrical Power Grids Incorporating SCADA and PMU Measurements. IEEE Latin America Transactions. vol. 13, no. 7, pp. 2245-225 [12] González I, Calderón A. J, Figueredo J and Sousa J. M 2019. A Literature Survey on Open Platform Communications (OPC) Applied to Advanced Industrial Environments. Electronics. 8, 510; doi:10.3390/electronics8050510 [13] Sasián F, Theron R and Gachet D 2016. Protocolo para comunicación inalámbrica en instalaciones de energías renovables. Revista Iberoamericana de Automática e Informática Industrial RIAI. vol 13. Issue 3. pp 310-321 [14] Silva J. R, Benítez I, Villafruela L, Gomis O and Sudriá A 2008. Modeling extended Petri nets compatible with GHENeSys IEC61131 for industrial automation. The International Journal of Advanced Manufacturing Technology. vol 36, Isuee 11-12, pp. 1180-1190 [15] Valencia G, Nuñez, J., Acevedo, C. (2019). Research Evolution on Renewable Energies Resources from 2007 to 2017: A Comparative Study on Solar, Geothermal, Wind and Biomass Energy. International Journal of Energy Economics and Policy. 9(6), 242-253. DOI: https://doi.org/10.32479/ijeep.8051 [16] Salazar C. A and Correa L. C 2011. Buses de campo y protocolos en redes industriales. Ventana Informática. 25. 83-109 [17] Pedraza L, Hernández-Suárez C. A, Alfonso D and López-Sarmiento 2013. Sistema de comunicación TCP/IP para el control de una intersección de tráfico vehicular. Ingeniería, Investigación y Tecnología. 2. 10.1016/S1405-7743(13)72268-6 [18] Caicedo-Erasoa J. C, Varón-Sernab D. R and Díaz Arango F. O 2012. Redes Industriales. Vector. 7, 12-17 [19] Custodio A, Urdaneta E, Barreto A and Oviedo A 2014. Sistema Electrónico de Adquisición y Entrega de Datos para Laboratorios de Enseñanza que puedan incorporarse a Entornos Virtuales de Aprendizaje. Congreso Iberoamericano de Ciencia, Tecnología, Innovación y Educación. ISBN: 978-84-7666-210-6 – Artículo 371 [20] Quiles F, Ortiz M. A, Moreno D and Brox M 2009. ADQPCI: Placa de Adquisición de Datos con Fines Docentes. Formación universitaria. 2(3), 25-30. https://dx.doi.org/10.4067/S0718- 50062009000300005 [21]Núñez Alvarez, José Ricardo et al. Metodología de diagnóstico de fallos para sistemas fotovoltaicos de conexión a red. Revista Iberoamericana de Automática e Informática industrial, [S.l.], sep. 2019. ISSN 1697-7920. Disponible en: <https://polipapers.upv.es/index.php/RIAI/article/view/11449> [22]Leal D. L, Celi M. R and Alvarez E 2016. Sistema integral para el diseño e implementación de control asistido por computadora. Revista Iberoamericana de Automática e Informática Industrial RIAI. 2016. 13. 228–237 [23] Minchala I, Ochoa S, Velecela E, Astudillo D and González J 2016. An open source SCADA system to implement advanced computer integrated manufacturing. IEEE Latin America Transactions. 14. 4657-4662. 10.1109/TLA.2016.7816994 [24] Benítez I. F, Lamar S, da Silva M, Miyagi E, Silva J. R 2017. Design of automatic control system based on unified timed hybrid Petri net. DYNA. Volumen 84, Número 200, p. 80-89. ISSN electrónico 2346-2183. ISSN impreso 0012-7353 [25] Munir A, Gordon-Ross A and Ranka S 201. Modeling and optimization of parallel and distributed embedded systems. Wiley-IEEE Press. 400 pages. ISBN: 978-1-119-08639-0 |
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Nuñez-Alvarez, J. R.Benítez-Pina, I. F.Llosas Albuerne, Yolanda2020-07-13T18:43:11Z2020-07-13T18:43:11Z20201757-89811757-899Xhttps://hdl.handle.net/11323/6543doi:10.1088/1757-899X/844/1/012016Corporación Universidad de la CostaREDICUC - Repositorio CUChttps://repositorio.cuc.edu.co/In laboratories new systems are created where researchers hope to obtain improved functions at a reasonable cost. In them, specialists need efficient tools that offer better performance and flexible features. This paper designs and implements a SCADA system for GERA laboratory (Scientific Group for Applied Renewable Energy at the University of Oriente) adjusted to the inherent characteristics of flexibility and functionality required in research centers. All these features are supported in an efficient communication system with the implementation of various protocols and novel solutions for this type of systems for monitoring and control. It verifies and validates the system for formal methods.Nuñez-Alvarez, J. R.Benítez-Pina, I. F.Llosas Albuerne, Yolanda-will be generated-orcid-0000-0002-5713-0565-600engIOP Conference Series: Materials Science and EngineeringCC0 1.0 Universalhttp://creativecommons.org/publicdomain/zero/1.0/info:eu-repo/semantics/openAccesshttp://purl.org/coar/access_right/c_abf2Renewable energyCommunicationsFlexible supervisorCommunications in flexible supervisor for laboratory research in renewable energyArtículo de revistahttp://purl.org/coar/resource_type/c_6501http://purl.org/coar/resource_type/c_2df8fbb1Textinfo:eu-repo/semantics/articlehttp://purl.org/redcol/resource_type/ARTinfo:eu-repo/semantics/acceptedVersion[1] Valencia G, Nuñez J and Duarte J 2019. Multiobjective Optimization of a Plate Heat Exchanger in a Waste Heat Recovery Organic Rankine Cycle System for Natural Gas Engines. Entropy. 21(7), 655; https://doi.org/10.3390/e21070655[2] Pérez López E 2015. Los sistemas SCADA en la automatización industrial. Tecnología en Marcha. vol. 28, no. 4, pp. 3–14[3] Romero A, Marín A and Jiménez J. A 2014. SCADA System for Detection of Explosive Atmospheres in Underground Coal Mines Through Wireless Sensor Network. IEEE Latin America Transactions. vol. 12, no. 8, pp. 1398-1403[4] Minchala L. I, Sánchez C, Yungaicela N, Mora A and Mata J. A 2016. Comparative Study Of Black – Box Models For Cement Fineness Prediction Using SCADA Measurement of a Closed Circuit Grinding. IEEE Latin America Transactions. vol. 14, no. 2, pp. 673-680[5] Vega-de la Cruz L, Lao León Y, and Pérez Pravia, M 2016. Redes de Petri en la Determinación de Puntos Críticos para el Control Interno. Revista Universidad y Sociedad. 8(4), 219-226[6] Castellanos J. S and Solaque L. E 2010. Modeling with Petri Nets and Implementation with Grafcet of a Flexible Manufacturing System with Concurrent Processes and Shared Resource. Ciencia e Ingeniería Neogranadina, Vol. 20-1, pp. 61-75[7] David R and Alla H 2010. Discrete, Continuous and Hybrid Petri Nets. Editorial Berlin Springer. Book. 337 pages. ISBN 978-3-642-10669-9[8] Silva M and Recalde L 2007. Redes de petri continuas: Expresividad, análisis y control de una clase de sistemas lineales conmutados. IEEE Latin America Transactions vol 4, no. 3, pp. 5-33[9] Quesada J. Carlos, Flores E, Bautista J and Quezada V 2014. Diseño e implementación de un sistema de control y monitoreo basado en HMI-PLC para un pozo de agua potable. Ingeniería, Investigación y Tecnología. vol.15 no.1, pp.41-50[10]Acebes L. F, Merino A, Alves R and Prada C 2009. Análisis en Línea del Estado Energético de Plantas Azucareras. Revista Iberoamericana de Automática e Informática Industrial, [S.l.], v. 6, n. 3, p. 68-75. ISSN 1697-7920[11] Rendón A, Fuerte C. R and Calderón J. G 2015. State Estimation of Electrical Power Grids Incorporating SCADA and PMU Measurements. IEEE Latin America Transactions. vol. 13, no. 7, pp. 2245-225[12] González I, Calderón A. J, Figueredo J and Sousa J. M 2019. A Literature Survey on Open Platform Communications (OPC) Applied to Advanced Industrial Environments. Electronics. 8, 510; doi:10.3390/electronics8050510[13] Sasián F, Theron R and Gachet D 2016. Protocolo para comunicación inalámbrica en instalaciones de energías renovables. Revista Iberoamericana de Automática e Informática Industrial RIAI. vol 13. Issue 3. pp 310-321[14] Silva J. R, Benítez I, Villafruela L, Gomis O and Sudriá A 2008. Modeling extended Petri nets compatible with GHENeSys IEC61131 for industrial automation. The International Journal of Advanced Manufacturing Technology. vol 36, Isuee 11-12, pp. 1180-1190[15] Valencia G, Nuñez, J., Acevedo, C. (2019). Research Evolution on Renewable Energies Resources from 2007 to 2017: A Comparative Study on Solar, Geothermal, Wind and Biomass Energy. International Journal of Energy Economics and Policy. 9(6), 242-253. DOI: https://doi.org/10.32479/ijeep.8051[16] Salazar C. A and Correa L. C 2011. Buses de campo y protocolos en redes industriales. Ventana Informática. 25. 83-109[17] Pedraza L, Hernández-Suárez C. A, Alfonso D and López-Sarmiento 2013. Sistema de comunicación TCP/IP para el control de una intersección de tráfico vehicular. Ingeniería, Investigación y Tecnología. 2. 10.1016/S1405-7743(13)72268-6[18] Caicedo-Erasoa J. C, Varón-Sernab D. R and Díaz Arango F. O 2012. Redes Industriales. Vector. 7, 12-17[19] Custodio A, Urdaneta E, Barreto A and Oviedo A 2014. Sistema Electrónico de Adquisición y Entrega de Datos para Laboratorios de Enseñanza que puedan incorporarse a Entornos Virtuales de Aprendizaje. Congreso Iberoamericano de Ciencia, Tecnología, Innovación y Educación. ISBN: 978-84-7666-210-6 – Artículo 371[20] Quiles F, Ortiz M. A, Moreno D and Brox M 2009. ADQPCI: Placa de Adquisición de Datos con Fines Docentes. Formación universitaria. 2(3), 25-30. https://dx.doi.org/10.4067/S0718- 50062009000300005[21]Núñez Alvarez, José Ricardo et al. Metodología de diagnóstico de fallos para sistemas fotovoltaicos de conexión a red. Revista Iberoamericana de Automática e Informática industrial, [S.l.], sep. 2019. ISSN 1697-7920. Disponible en: <https://polipapers.upv.es/index.php/RIAI/article/view/11449>[22]Leal D. L, Celi M. R and Alvarez E 2016. Sistema integral para el diseño e implementación de control asistido por computadora. Revista Iberoamericana de Automática e Informática Industrial RIAI. 2016. 13. 228–237[23] Minchala I, Ochoa S, Velecela E, Astudillo D and González J 2016. An open source SCADA system to implement advanced computer integrated manufacturing. IEEE Latin America Transactions. 14. 4657-4662. 10.1109/TLA.2016.7816994[24] Benítez I. F, Lamar S, da Silva M, Miyagi E, Silva J. R 2017. Design of automatic control system based on unified timed hybrid Petri net. DYNA. Volumen 84, Número 200, p. 80-89. ISSN electrónico 2346-2183. ISSN impreso 0012-7353[25] Munir A, Gordon-Ross A and Ranka S 201. Modeling and optimization of parallel and distributed embedded systems. Wiley-IEEE Press. 400 pages. 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