Implementation of an Energy Management Systemin Colombian Manufacturing - A MethodologicalApproach

This paper aims to analyze mechanisms such as theEnergy management systems approach in industry 4.0. The paperis a review of techniques for optimizing energy consumptionwith energy efficiency, advanced metering infrastructure andrational and efficient use of energy to reduce the pollution aswell as...

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Autores:
Marin Garcia, Juan David
Marin Jimenez, Juan David
Carvajal Quintero, Sandra Ximena
Tipo de recurso:
Fecha de publicación:
2021
Institución:
Universidad Tecnológica de Bolívar
Repositorio:
Repositorio Institucional UTB
Idioma:
eng
OAI Identifier:
oai:repositorio.utb.edu.co:20.500.12585/10393
Acceso en línea:
https://hdl.handle.net/20.500.12585/10393
Palabra clave:
Advanced Metering Infrastructure
Data Analysis
Demand Management
Energy Efficiency
Energy Management System
Industrial Users
620
Rights
openAccess
License
http://creativecommons.org/licenses/by/4.0/
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dc.title.spa.fl_str_mv Implementation of an Energy Management Systemin Colombian Manufacturing - A MethodologicalApproach
title Implementation of an Energy Management Systemin Colombian Manufacturing - A MethodologicalApproach
spellingShingle Implementation of an Energy Management Systemin Colombian Manufacturing - A MethodologicalApproach
Advanced Metering Infrastructure
Data Analysis
Demand Management
Energy Efficiency
Energy Management System
Industrial Users
620
title_short Implementation of an Energy Management Systemin Colombian Manufacturing - A MethodologicalApproach
title_full Implementation of an Energy Management Systemin Colombian Manufacturing - A MethodologicalApproach
title_fullStr Implementation of an Energy Management Systemin Colombian Manufacturing - A MethodologicalApproach
title_full_unstemmed Implementation of an Energy Management Systemin Colombian Manufacturing - A MethodologicalApproach
title_sort Implementation of an Energy Management Systemin Colombian Manufacturing - A MethodologicalApproach
dc.creator.fl_str_mv Marin Garcia, Juan David
Marin Jimenez, Juan David
Carvajal Quintero, Sandra Ximena
dc.contributor.author.none.fl_str_mv Marin Garcia, Juan David
Marin Jimenez, Juan David
Carvajal Quintero, Sandra Ximena
dc.subject.keywords.spa.fl_str_mv Advanced Metering Infrastructure
Data Analysis
Demand Management
Energy Efficiency
Energy Management System
Industrial Users
topic Advanced Metering Infrastructure
Data Analysis
Demand Management
Energy Efficiency
Energy Management System
Industrial Users
620
dc.subject.unesco.none.fl_str_mv 620
description This paper aims to analyze mechanisms such as theEnergy management systems approach in industry 4.0. The paperis a review of techniques for optimizing energy consumptionwith energy efficiency, advanced metering infrastructure andrational and efficient use of energy to reduce the pollution aswell as to strengthen Industry 4.0 models and the monitoring andmanagement opportunities that exist with the implementation ofthis models in Colombia.
publishDate 2021
dc.date.issued.none.fl_str_mv 2021-12-15
dc.date.accessioned.none.fl_str_mv 2022-01-21T20:03:51Z
dc.date.available.none.fl_str_mv 2022-01-21T20:03:51Z
dc.date.submitted.none.fl_str_mv 2022-01-21
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dc.type.spa.spa.fl_str_mv http://purl.org/coar/resource_type/c_2df8fbb1
status_str publishedVersion
dc.identifier.citation.spa.fl_str_mv Marin Garcia, J., Marin Jiménez, J., & Carvajal Quintero, S. (2021). Implementation of an Energy Management System in Colombian Manufacturing - A Methodological Approach. Transactions on Energy Systems and Engineering Applications, 2(2), 9-14. Retrieved from https://revistas.utb.edu.co/index.php/tesea/article/view/440
dc.identifier.issn.none.fl_str_mv 2745-0120
dc.identifier.uri.none.fl_str_mv https://hdl.handle.net/20.500.12585/10393
dc.identifier.doi.none.fl_str_mv doi.org/10.32397/tesea.vol2.n2.2
dc.identifier.instname.spa.fl_str_mv Universidad Tecnológica de Bolívar
dc.identifier.reponame.spa.fl_str_mv Repositorio Universidad Tecnológica de Bolívar
identifier_str_mv Marin Garcia, J., Marin Jiménez, J., & Carvajal Quintero, S. (2021). Implementation of an Energy Management System in Colombian Manufacturing - A Methodological Approach. Transactions on Energy Systems and Engineering Applications, 2(2), 9-14. Retrieved from https://revistas.utb.edu.co/index.php/tesea/article/view/440
2745-0120
doi.org/10.32397/tesea.vol2.n2.2
Universidad Tecnológica de Bolívar
Repositorio Universidad Tecnológica de Bolívar
url https://hdl.handle.net/20.500.12585/10393
dc.language.iso.spa.fl_str_mv eng
language eng
dc.rights.coar.fl_str_mv http://purl.org/coar/access_right/c_abf2
dc.rights.uri.*.fl_str_mv http://creativecommons.org/licenses/by/4.0/
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dc.rights.cc.*.fl_str_mv Atribución 4.0 Internacional
rights_invalid_str_mv http://creativecommons.org/licenses/by/4.0/
Atribución 4.0 Internacional
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eu_rights_str_mv openAccess
dc.format.extent.none.fl_str_mv 6 páginas
dc.format.mimetype.spa.fl_str_mv application/pdf
dc.coverage.spatial.none.fl_str_mv Colombia
dc.publisher.place.spa.fl_str_mv Cartagena de Indias
dc.publisher.sede.spa.fl_str_mv Campus Tecnológico
dc.publisher.discipline.spa.fl_str_mv Ingeniería Eléctrica
dc.source.spa.fl_str_mv Tesea: transactions on energy systems and engineering applications, vol. 2 no. 02
institution Universidad Tecnológica de Bolívar
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spelling Marin Garcia, Juan David78ba46f2-01c3-4f99-9bf6-c6a3e495c750Marin Jimenez, Juan Davidc80d97d0-d265-46c9-9537-4d020c9453dfCarvajal Quintero, Sandra Ximena9dc4840f-4f84-4378-a0fd-2e9cae450017Colombia2022-01-21T20:03:51Z2022-01-21T20:03:51Z2021-12-152022-01-21Marin Garcia, J., Marin Jiménez, J., & Carvajal Quintero, S. (2021). Implementation of an Energy Management System in Colombian Manufacturing - A Methodological Approach. Transactions on Energy Systems and Engineering Applications, 2(2), 9-14. Retrieved from https://revistas.utb.edu.co/index.php/tesea/article/view/4402745-0120https://hdl.handle.net/20.500.12585/10393doi.org/10.32397/tesea.vol2.n2.2Universidad Tecnológica de BolívarRepositorio Universidad Tecnológica de BolívarThis paper aims to analyze mechanisms such as theEnergy management systems approach in industry 4.0. The paperis a review of techniques for optimizing energy consumptionwith energy efficiency, advanced metering infrastructure andrational and efficient use of energy to reduce the pollution aswell as to strengthen Industry 4.0 models and the monitoring andmanagement opportunities that exist with the implementation ofthis models in Colombia.Universidad Tecnológica de Bolívar6 páginasapplication/pdfenghttp://creativecommons.org/licenses/by/4.0/info:eu-repo/semantics/openAccessAtribución 4.0 Internacionalhttp://purl.org/coar/access_right/c_abf2Tesea: transactions on energy systems and engineering applications, vol. 2 no. 02Implementation of an Energy Management Systemin Colombian Manufacturing - A MethodologicalApproachinfo:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionhttp://purl.org/coar/resource_type/c_2df8fbb1http://purl.org/coar/version/c_970fb48d4fbd8a85Advanced Metering InfrastructureData AnalysisDemand ManagementEnergy EfficiencyEnergy Management SystemIndustrial Users620Cartagena de IndiasCampus TecnológicoIngeniería EléctricaInvestigadores[1] L. Price, A. McKane, M. Ploutakhina, P. Monga, D. Gielen, M. Bazilian, P. Nussbaumer, M. Howells, and H.-H. Rogner, “Policies and measures to realise industrial energy efficiency and mitigate climate change,” 2009.[2] Bnamericas, “2019 cerro con crecimiento del 4.02% en el consumo de ´ energ´ıa en Colombia,” 2020.[3] M. de Tecnologias de la Informacion y las Comunicaciones, “Aspectos basicos de la industria 4.0,” tech. rep., 2019.[4] FENALCO, “Que aparezca la industria 4.0 en colombia,” 2019.[5] J. H. Bocanegra, “Estado de la industria 4.0 en colombia,” 2017[6] M. de Energ´ıa y Minas de Peru, “Gu ´ ´ıa de orientacion del uso eficiente ´ de la energ´ıa y de diagnostico energ ´ etico,” 2017[7] A. B. Nordelo, “Barriers and key factors to promote energy efficiency in industry,”[8] G. E. G. Bustamante, “Analisis de escenarios de la gesti ´ on energ ´ etica ´ del sector industrial del ecuador,” Master’s thesis, 2018[9] T. Javied, T. Rackow, R. Stankalla, C. Sterk, and J. Franke, “A study on electric energy consumption of manufacturing companies in the german industry with the focus on electric drives,” Procedia CIRP, vol. 41, pp. 318–322, 2016[10] Z. Kaile, F. Chao, and Y. Shanlin, “Big data driven smart energy management: From big data to big insights,” Renewable and Sustainable Energy Reviews, vol. 56, pp. 215–225, apr 2016.[11] K.-D. Thoben, S. Wiesner, and T. Wuest, ““Industrie 4.0” and Smart Manufacturing - A Review of Research Issues and Application Examples,” International Journal of Automation Technology, vol. 11, pp. 4–16, dec 2017[12] J. Lee, B. Bagheri, and H.-A. Kao, ““A Cyber-Physical Systems architecture for Industry 4.0-based manufacturing systems,” Manufacturing Letters, vol. 3, pp. 18–23, jan 2015[13] N. Carvalho, O. Chaim, E. Cazarini, and M. Gerolamo, “Manufacturing in the fourth industrial revolution: A positive prospect in sustainable manufacturing,” Procedia Manufacturing, vol. 21, pp. 671–678, 2018[14] T. Bauernhansl, B. Diegner, J. Diemer, M. Dummler, C. Eckert, ¨ W. Herfs, H. Heyn, C. Hilger, M. Ten Hompel, J. Kalhoff, et al., “Industrie 4.0-whitepaper fue-themen,” Berlin: Bundesministerium fur¨ Wirtschaft und Energie-Plattform Industrie, vol. 4, p. 11, 2014.[15] D. Tiwari, M. Farnsworth, Z. Zhang, G. W. Jewell, and A. Tiwari, “Inprocess monitoring in electrical machine manufacturing: A review of state of the art and future directions,” Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, pp. 2035–2051, 2021.[16] N. Koseleva and G. Ropaite, “Big data in building energy efficiency: understanding of big data and main challenges,” Procedia Engineering, vol. 172, pp. 544–549, 2017[17] K. Walter, K. Sibylle, K. Johanna, R. Ina, and S. Silas, “Din en 16001: Energy management systems in practice. a guide for companies and organisations; din en 16001: Energiemanagementsysteme in der praxis. ein leitfaden fuer unternehmen und organisationen,” Jun 2010[19] B. Markus, E. Norbert, W. Daniel, and F. Jorg, “Transparent acquisition ¨ and processing of energy data in the field of industrial productionrequirements and applications,” in Applied Mechanics and Materials, vol. 882, pp. 81–89, Trans Tech Publ, 2018[20] Exellios, “S373-Cellular Modbus MQTT IoT Gateway – Exellios IIoT Industrial Internet Of Things,” 2020[21] B. Markus, S. Franziska, K. Sven, and F. Jorg, “Ontology-based descrip- ¨ tion of energy optimization potentials for production environments,” in Applied Mechanics and Materials, vol. 805, pp. 53–60, Trans Tech Publ, 2015[22] T. Walter, T. Tullio, and U. Marcello, “A virtual factory approach for in situ simulation to support production and maintenance planning,” CIRP Annals, vol. 64, no. 1, pp. 451–454, 2015[23] B. Markus, B. Matthias, and F. Jorg, “Semantic meta model for the ¨ description of resource and energy data in the energy data management cycle,” in Applied Mechanics and Materials, vol. 871, pp. 69–76, Trans Tech Publ, 2017.[24] M. Imadeddine, O. Brahim, H. Ferdaous, and F. Bouchra, “Semanticbased big data integration framework using scalable distributed ontology matching strategy,” Distributed and Parallel Databases, pp. 1–47, 2021[25] Congreso de Colombia, “Ley 697 de 2001 Nivel Nacional,” 2001[26] Congreso de la Republica, “Ley 1715 de 2014,” may 2014.[27] Unidad de Planeacion Minero Energ ´ etica UPME, “Guia pr ´ actica para ´ la aplicacion de los incentivos tributarios de la Ley 1715 de 2014,” ´ Ministerio Minas y Energia, vol. 1, p. 28, 2014[28] Comision de Regulaci ´ on de Energ ´ ´ıa y Gas, “CREG 025 de 2016,” tech. rep., CREG, Bogota D.C., mar 2016[29] J. Hernandez Vidal, “DEMANDA DESCONECTABLE VOLUNTARIA ´ - DDV - https://estudiolegalhernandez.com,” aug 2020.[30] T. Jacopo, H. M. G, and L. Matthew, “Demand response experience in europe: Policies, programmes and implementation,” Energy, vol. 35, no. 4, pp. 1575–1583, 2010[31] T. Ye, X. Fei, and C. Lei, “Research into possibility of smart industrial load participating into demand response to supply the power system,” in CICED 2010 Proceedings, pp. 1–5, IEEE, 2010.[32] W. Xin, L. Xinmin, Q. Dandan, W. Yu, L. Li, and Z. Liang, “Prediction of industrial power consumption and air pollutant emission in energy internet,” in 2021 3rd Asia Energy and Electrical Engineering Symposium (AEEES), pp. 1155–1159, IEEE, 2021.[33] A. Tenkorang, Richard, and H. Petri, “Big data applications in operations/supply-chain management: A literature review,” Computers & Industrial Engineering, vol. 101, pp. 528–543, 2016[34] B. Haarmann, Ontology On Demand: Vollautomatische Ontologieerstellung aus deutschen Texten mithilfe moderner Textmining-Prozesse. epubli, 2014[35] N. Natalya, M. Deborah, et al., “Ontology development 101: A guide to creating your first ontology,” 2001[36] GCF (Green Climate Fund), “Eficiencia energetica para la industria y ´ los aparatos electricos,” tech. rep., Green Climate Fund, 2017[37] D. Sevilleja Aceituno, “Eficiencia energetica en el sector industrial,” ´ tech. rep., Universidad Carlos III de Madrid, Leganes, dec 201138] L. Biaou, P. Langlois, and J. Chabchoub, “Gu´ıa B: Justificacion de la ´ intervencion del gobierno en el mercado de eficiencia energ ´ etica — ´ Publications,” 2012.[39] Organizacion Internacional de Normalizaci ´ on, “ISO 50001: Sistemas de ´ Gestion de la Energ ´ ´ıa,” 2011[40] C. C. Andres, D. Wim, D. Johan, and P. Jhon, “Determining electrical ´ loss in electromagnetically-modelled induction motors using the finite element method,” Ingenier´ıa e Investigacion´ , vol. 28, no. 3, pp. 64–74, 2008.http://purl.org/coar/resource_type/c_2df8fbb1ORIGINAL_Art_2__V2_N2__Implementation_of_an_Energy_Management_System_in_Colombian_Manufacturing___A_Methodological_Approach.pdf_Art_2__V2_N2__Implementation_of_an_Energy_Management_System_in_Colombian_Manufacturing___A_Methodological_Approach.pdfapplication/pdf163921https://repositorio.utb.edu.co/bitstream/20.500.12585/10393/1/_Art_2__V2_N2__Implementation_of_an_Energy_Management_System_in_Colombian_Manufacturing___A_Methodological_Approach.pdf866014b87017acae8e3f8d88b902bce1MD51CC-LICENSElicense_rdflicense_rdfapplication/rdf+xml; charset=utf-8908https://repositorio.utb.edu.co/bitstream/20.500.12585/10393/2/license_rdf0175ea4a2d4caec4bbcc37e300941108MD52LICENSElicense.txtlicense.txttext/plain; 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