Symbionte - Development of a low-cost IOT device focused on protection and monitoring compressors in air-conditioning and refrigeration applications
ilustraciones, fotografías a color
- Autores:
-
Sierra Sierra, Nelson Ariel
- Tipo de recurso:
- Fecha de publicación:
- 2023
- Institución:
- Universidad Nacional de Colombia
- Repositorio:
- Universidad Nacional de Colombia
- Idioma:
- eng
- OAI Identifier:
- oai:repositorio.unal.edu.co:unal/84157
- Palabra clave:
- Industria del aire acondicionado
Industria de equipos para calefacción
Industria de la calefacción y la ventilación
Air conditioning industry
Heating equipment industry
Heating and ventilation industry
Data Adquisition
IIOT
Refrigeration
Air Conditioning
Condition based
Maintenance
Arduino
ESP32
Adquisición de datos
IIOT
Refrigeración
Aire Acondicionado
Mantenimiento
Basado en condición
- Rights
- openAccess
- License
- Atribución-NoComercial 4.0 Internacional
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dc.title.eng.fl_str_mv |
Symbionte - Development of a low-cost IOT device focused on protection and monitoring compressors in air-conditioning and refrigeration applications |
dc.title.translated.spa.fl_str_mv |
Symbionte - Desarrollo de un dispositivo IOT enfocado en la protección y monitorización de compresores en aplicaciones de aire acondicionado y refrigeración |
title |
Symbionte - Development of a low-cost IOT device focused on protection and monitoring compressors in air-conditioning and refrigeration applications |
spellingShingle |
Symbionte - Development of a low-cost IOT device focused on protection and monitoring compressors in air-conditioning and refrigeration applications Industria del aire acondicionado Industria de equipos para calefacción Industria de la calefacción y la ventilación Air conditioning industry Heating equipment industry Heating and ventilation industry Data Adquisition IIOT Refrigeration Air Conditioning Condition based Maintenance Arduino ESP32 Adquisición de datos IIOT Refrigeración Aire Acondicionado Mantenimiento Basado en condición |
title_short |
Symbionte - Development of a low-cost IOT device focused on protection and monitoring compressors in air-conditioning and refrigeration applications |
title_full |
Symbionte - Development of a low-cost IOT device focused on protection and monitoring compressors in air-conditioning and refrigeration applications |
title_fullStr |
Symbionte - Development of a low-cost IOT device focused on protection and monitoring compressors in air-conditioning and refrigeration applications |
title_full_unstemmed |
Symbionte - Development of a low-cost IOT device focused on protection and monitoring compressors in air-conditioning and refrigeration applications |
title_sort |
Symbionte - Development of a low-cost IOT device focused on protection and monitoring compressors in air-conditioning and refrigeration applications |
dc.creator.fl_str_mv |
Sierra Sierra, Nelson Ariel |
dc.contributor.advisor.none.fl_str_mv |
González Roldán, Felipe |
dc.contributor.author.none.fl_str_mv |
Sierra Sierra, Nelson Ariel |
dc.contributor.orcid.spa.fl_str_mv |
nasierras [0009000230235532] |
dc.subject.lemb.spa.fl_str_mv |
Industria del aire acondicionado Industria de equipos para calefacción Industria de la calefacción y la ventilación |
topic |
Industria del aire acondicionado Industria de equipos para calefacción Industria de la calefacción y la ventilación Air conditioning industry Heating equipment industry Heating and ventilation industry Data Adquisition IIOT Refrigeration Air Conditioning Condition based Maintenance Arduino ESP32 Adquisición de datos IIOT Refrigeración Aire Acondicionado Mantenimiento Basado en condición |
dc.subject.lemb.eng.fl_str_mv |
Air conditioning industry Heating equipment industry Heating and ventilation industry |
dc.subject.proposal.eng.fl_str_mv |
Data Adquisition IIOT Refrigeration Air Conditioning Condition based Maintenance |
dc.subject.proposal.none.fl_str_mv |
Arduino ESP32 |
dc.subject.proposal.spa.fl_str_mv |
Adquisición de datos IIOT Refrigeración Aire Acondicionado Mantenimiento Basado en condición |
description |
ilustraciones, fotografías a color |
publishDate |
2023 |
dc.date.accessioned.none.fl_str_mv |
2023-07-07T14:06:48Z |
dc.date.available.none.fl_str_mv |
2023-07-07T14:06:48Z |
dc.date.issued.none.fl_str_mv |
2023-06-14 |
dc.type.spa.fl_str_mv |
Trabajo de grado - Maestría |
dc.type.driver.spa.fl_str_mv |
info:eu-repo/semantics/masterThesis |
dc.type.version.spa.fl_str_mv |
info:eu-repo/semantics/acceptedVersion |
dc.type.content.spa.fl_str_mv |
Text |
dc.type.redcol.spa.fl_str_mv |
http://purl.org/redcol/resource_type/TM |
status_str |
acceptedVersion |
dc.identifier.uri.none.fl_str_mv |
https://repositorio.unal.edu.co/handle/unal/84157 |
dc.identifier.instname.spa.fl_str_mv |
Universidad Nacional de Colombia |
dc.identifier.reponame.spa.fl_str_mv |
Repositorio Institucional Universidad Nacional de Colombia |
dc.identifier.repourl.spa.fl_str_mv |
https://repositorio.unal.edu.co/ |
url |
https://repositorio.unal.edu.co/handle/unal/84157 https://repositorio.unal.edu.co/ |
identifier_str_mv |
Universidad Nacional de Colombia Repositorio Institucional Universidad Nacional de Colombia |
dc.language.iso.spa.fl_str_mv |
eng |
language |
eng |
dc.relation.references.spa.fl_str_mv |
Doug Boucher. “Mutualism Judith L. Bronstein, editor.” In: Integrative and Comparative Biology 56 (July 2016), icw071. doi: 10.1093/icb/icw071. Equip redaccio. “Wilson, E. O. (1975). Sociobiology. The New Synthesis”. In: Papers. Revista de Sociologia 19 (Jan. 1983), p. 149. doi: 10.5565/rev/papers/v19n0.1342. Robert Poulin. “Evolutionary ecology of parasites”. In: Evolutionary ecology of parasites. Princeton university press, 2011. Michael Smith and Karlson Hargroves. “Factor Five Textbook - Paddock to Plate Chapter - Dairy Farm, Supermarket, Bakery, Restaurant and Fast Food Restaurant case studies”. In: Mar. 2010. UPME. Primer balance de Energ´ıa Util para Colombia y Cuantifcaci´on de las Perdidas ´ energ´eticas relacionadas y la brecha de efciencia energ´etica. Apr. 2019. Jay Lee et al. “Intelligent maintenance systems and predictive manufacturing”. In: Journal of Manufacturing Science and Engineering 142.11 (2020) David Leonardo Pinz´on Ni˜no. “Panorama de aplicaci´on de internet de las cosas (IoT)”. In: (2016). Adel A Kader. “Increasing food availability by reducing postharvest losses of fresh produce”. In: V International Postharvest Symposium 682. 2004, pp. 2169–2176. Rosa S Rolle. “Improving postharvest management and marketing in the Asia-Pacifc region: issues and challenges”. In: Postharvest management of fruit and vegetables in the Asia-Pacifc region 1.1 (2006), pp. 23–31. Tristram Stuart. Waste: Uncovering the global food scandal. WW Norton & Company, 2009. Jenny Gustavsson et al. Global food losses and food waste. 2011. Tina Birmpili. “Montreal Protocol at 30: The governance structure, the evolution, and the Kigali Amendment”. In: Comptes Rendus Geoscience 350.7 (2018), pp. 425–431. William C. Reynolds and Henry C. Perkins. Engineering thermodynamics / William C. Reynolds, Henry C. Perkins. 2d ed. McGraw-Hill New York, 1977, xii, 690 p. isbn: 0070520461 R.J. Dossat. Principios de refrigeraci´on. Compa˜nıa Editorial Continental, 1980. isbn: 9789682602016 P.J. Rapin, J. Jacquard, and P. Jacquard. Instalaciones Frigorifcas - Refrigerating Facilities 1: Fisica Aplicada. Acceso R´apido. Marcombo, 1997. isbn: 9788426710918 Yunus A. Cengel. Thermodynamics: an Engineering Approach. Boston, MS: Graw-Hill Higher Education, 2008. M. Alonso, E.J. Finn, and C.A. Heras. Fısica III: fundamentos cuanticos y estadısticos. v. 3. Fondo Educativo Interamericano, 1976. isbn: 9789686630039 Aoi Hashizume, T. Mizuno, and Hiroshi Mineno. “Energy Monitoring System Using Sensor Networks in Residential Houses”. In: Mar. 2012, pp. 595–600. isbn: 978-1-4673- 0867-0. doi: 10.1109/WAINA.2012.187. Pedram Memari, Seyedeh Samira Mohammadi, and S.F. Ghaderi. “Cloud Platform Real-time Measurement and Verifcation Procedure for Energy Efciency of Washing Machines”. In: Sept. 2018. doi: 10.15439/2018F35. Joao Luis Grizinsky de Brito. “Sistema para monitoramento de consumo de energia el´etrica particular, em tempo real e n˜ao invasivo utilizando a tecnologia Arduino”. MA thesis. Universidade Estadual de Londrina, 2016. A. Daramas et al. “HIVE: Home Automation System for Intrusion Detection”. In: May 2016, pp. 101–104. doi: 10.1109/ICT-ISPC.2016.7519246. Andrea Zanella et al. “Internet of Things for Smart Cities”. In: Internet of Things Journal, IEEE 1 (Jan. 2012). doi: 10.1109/JIOT.2014.2306328. Byungchul Kim and Olga Lavrova. “Optimal power flow and energy-sharing among multi-agent smart buildings in the smart grid”. In: July 2013, pp. 1–5. doi: 10.1109/ EnergyTech.2013.6645336. Dave Evans. Internet de las cosas: C´omo la pr´oxima evoluci´on de Internet lo cambia todo. Cisco Internet Business Solutions Group. CISCO, Apr. 2011. Vladimir Tanasiev et al. “Enhancing Monitoring and Control of an HVAC System through IoT”. In: Energies 15 (Jan. 2022), p. 924. doi: 10.3390/en15030924. Raffaele Carli et al. “IoT Based Architecture for Model Predictive Control of HVAC Systems in Smart Buildings”. In: Sensors 20 (Jan. 2020), p. 781. doi: 10 . 3390 / s20030781. B. Padmaja et al. “A Smart IoT System for Remote Refrigeration Monitoring”. In: 2021. Neyser Fabian Robayo Vega Jefferson Leonidas Narv´aez Cartagena. “Dise˜no e implementaci´on de un sistema para mantenimiento preventivo con sensores en un sistema de climatizaci´on tipo spilt utilizando hardware de bajo costo con IoT”. MA thesis. Universidad Polit´ecnica Salesiana, 2022. Ali Ramschie, Johan Makal, and Veny Manado. “Modeling of Energy-Saving Mode Systems on Air Conditioning Equipment”. In: Oct. 2018, pp. 492–497. doi: 10.1109/ iCAST1.2018.8751579. Ali Ramschie, Johan F., and Veny V. “Simulation of Electric Energy Consumption Monitoring System Air Conditioning Equipment”. In: International Journal of Computer Applications 182 (Sept. 2018), pp. 19–24. doi: 10.5120/ijca2018917865. Hyeonwoo Jang et al. “Design and Implementation of IoT-based HVAC and Lighting System for Energy Saving”. In: MATEC Web of Conferences 260 (Jan. 2019), p. 02012. doi: 10.1051/matecconf/201926002012. Vladimir Tanasiev et al. “Enhancing Monitoring and Control of an HVAC System through IoT”. In: Energies 15 (Jan. 2022), p. 924. doi: 10.3390/en15030924. I-Huai Lu et al. “Research and Development of Air-Conditioning Chiller IoT Controller and Experiment of Automatic Demand Response Unloading Strategy.” In: International Journal of Organizational Innovation 13.3 (2021) Emerson Commercial and Residential Solutions. AE-1367 CoreSense™ Protection for Copeland Discus™ Compressors. Version 1. Emerson. 8000 West Florissant Avenue, P.O. Box 4100, St. Louis , MO 63136, US, 2018 Emerson Commercial and Residential Solutions. AE-1372 Copeland Scroll™ Compressors for CO2 Subcritical Refrigeration (R-744). Version 1. Emerson. 8000 West Florissant Avenue, P.O. Box 4100, St. Louis , MO 63136, US, 2017. Emerson Commercial and Residential Solutions. AE-1424 CoreSense Diagnostic Modules for Copeland Scroll Refrigeration Compressors. Version 1. Emerson. 8000 West Florissant Avenue, P.O. Box 4100, St. Louis , MO 63136, US, 2017 Emerson Commercial and Residential Solutions. AE-1438 Application Guidelines for ZF*K5E ZB*K5E Copeland Scroll™ K5 Compressors for Refrigeration 8-15 HP with CoreSense™ Diagnostics. Version 1. Emerson. 8000 West Florissant Avenue, P.O. Box 4100, St. Louis , MO 63136, US, 2020 Bitzer Electronics. KT-230-1: Bitzer IQ Module. Bitzer Engineering Report. Version 1. Bitzer GmBH. 4080 Enterprise Way Flowery Branch, GA 30542 US, 2020. GEA. Operating instructions BCM2000. GEA Bock Compressor Management. Version 1. GEA Group. Peter-M¨uller-Straße 12, 40468 D¨usseldorf, Germany, 2014. Dorin Compressors. CMM. Compressor Management Module. Version 1. OFFICINE MARIO DORIN S.p.A. Via Aretina 388, 50061 Compiobbi - Florence, Italy, 2018. Klas BERGLOF. “The ClimaCheck method To Measure–Analyze and optimize refrig- ¨ eration processes.””. International Union of Pure and Applied Chemistry. IUPAC Compendium of Chemical Terminology – The Gold Book. 2009. url: http://goldbook.iupac.org/. Emerson Commercial and Residential Solutions. Understanding Compressor Electronics. Compressor Electronics. Version 1. Emerson. 8000 West Florissant Avenue, P.O. Box 4100, St. Louis , MO 63136, US, 2014 Cibse. CIBSE guide C: reference data. Routledge, 2007 Danfoss. Refrigerant options now and in the future. A white paper on the global trends within refrigerants in air conditioning and refrigeration seen from a Danfoss perspective. Danfoss, 2022. url: refrigerants.danfoss.com J. Tomczyk et al. Refrigeration and Air Conditioning Technology. Cengage Learning, 2016. isbn: 9781305856622. Heating Air-Conditioning and Refrigeration Institute. “2020 Standard for Performance Rating of Positive Displacement Refrigerant Compressors”. In: AHRI Standard 540. Mar. 2020, pp. 6–23. Heating Air-Conditioning and Refrigeration Institute. “2012 Standard for Performance Rating of Positive Displacement Carbon Dioxide Refrigerant Compressors and Compressor Units”. In: AHRI Standard 571. Mar. 2012, pp. 6–23 G.H. Hundy, A.R. Trott, and T.C. Welch. Refrigeration and Air-Conditioning. Elsevier Science, 2008. isbn: 9780080559209 Carel Industries S.p.A. Types of Compression Systems. url: https://www.carel. com/reciprocating-compressors. CORPORATION CARRIER. Identifying Compressor Failure Modes. 2020. url: https: //www.rchvacparts.com/literature/originals/574-0181.pdf. K.W. Yun. “Failure Modes and Risk Assessment of Rotary Compressor Under Extraordinary Operating Conditions”. In: International Compressor Engineering Conference 1382 (2000). Amanda Koons-Stapf. “Condition Based Maintenance: Theory, Methodology, Application”. In: Jan. 2015, pp. 1–35 Rebecca Charles, Teegan Johnson, and Sarah Fletcher. “The Use of Job Aids for Visual Inspection in Manufacturing and Maintenance”. In: Procedia CIRP 38 (Dec. 2015), pp. 90–93. doi: 10.1016/j.procir.2015.08.056. PRUFTECHNIK AG. ¨ Machine diagnosis: Quick and easy through FFT analysis. Manuscript. Contents originally published as a presentation manuscript by M. Luft, PRUFTECH- ¨ NIK AG. May 2010. Waheed Gul. “State of the Art Vibration Analysis of Electrical Rotating Machines”. In: Journal of Electrical Engineering http://www.davidpublisher.com/Home/Journal/JEE (Mar. 2017), pp. 84–99. doi: 10.17265/2328-2223/2017.02.004. A. Mayer. “Understanding time-dependent limits”. In: 7 (Nov. 2005) Vladimir Tanasiev et al. “Enhancing Monitoring and Control of an HVAC System through IoT”. In: Energies 15 (Jan. 2022), p. 924. doi: 10.3390/en15030924. American National Standard For Electric Power Systems and Equipment — Voltage Ratings (60 Hertz). Standard. US: NEMA: National Electrical Manufacturers Association, June 2011 E. W. Lemmon et al. NIST Standard Reference Database 23: Reference Fluid Thermodynamic and transport Properties-REFPROP, Version 10.0, National Institute of Standards and Technology. 2018. doi: https://doi.org/10.18434/T4/1502528. url: https://www.nist.gov/srd/refprop. Oxford University Press. A Dictionary of Physics. Oxford University Press, 2015 Juhi Chaudhary and Anurag Mishra. “Detection of Gas Leakage and Automatic Alert System using Arduino”. In: SSRN Electronic Journal (Jan. 2019). doi: 10 . 2139 / ssrn.3350271 Ashish Choudhary. Measuring CO2 Concentration in Air using Arduino and MQ-135 Sensor. 2020. url: https : / / circuitdigest . com / microcontroller - projects / interfacing-mq135-gas-sensor-with-arduino-to-measure-co2-levels-in-ppm (visited on 11/17/2020). Mechanical vibration — Measurement and evaluation of machine vibration — Part 8: Reciprocating compressor systems. Standard. Geneva, CH: International Organization for Standardization, Mar. 2018. Microsoft Corporation. Arduino SDK Cloud Azure Development for Arduino. https: //github.com/Azure/azure-sdk-for-c-arduino. 2013. Nicolae Tudoroiu et al. “Fault Detection and Diagnosis (FDD) in Heating Ventilation Air Conditioning Systems (HVAC) Using an Interactive Multiple Model Augmented Unscented Kalman Filter (IMMAUKF)”. In: 2008 Conference on Human System Interactions (2008), pp. 334–339. Marko Petkovˇsek, Mitja Nemec, and Peter Zajec. “Algorithm Execution Time and Accuracy of NTC Thermistor-Based Temperature Measurements in Time-Critical Applications”. In: Mathematics 9.18 (2021), p. 2266. Isiyaku Abubakar et al. “Calibration of ZMPT101B voltage sensor module using polynomial regression for accurate load monitoring”. In: 12 (Jan. 2017), pp. 1076–1084. Hoedi Prasetyo et al. “Design of Power Monitoring System Based on Internet of Things (IoT) with Calibration Interface”. In: 2021 International Conference on ICT for Smart Society (ICISS). IEEE. 2021, pp. 1–5. Gaudentiu Varzaru et al. “A cost-effective solution for remote Carbon Dioxide indoor monitoring”. In: 2017 9th International Conference on Electronics, Computers and Artifcial Intelligence (ECAI). IEEE. 2017, pp. 1–6. Siddhesh Nan. ThingESP Cloud Client Library. Sept. 2021. url: https://github. com/SiddheshNan/ThingESP-Arduino-Library. Luis Eduardo Garcia Gonzalez Alexandre Campos Leandro da Silva. “Robot position Optimization and Based on Joint and Mean Torque and Norm”. In: Latin America Congress on Automation and Robotics. Feb. 2017, pp. 1–6 Kriwan. Kriwan INT Series. Version 1. KRIWAN Industrie-Elektronik GmbH. Allmand 11, 74670 Forchtenberg. Deutschland, 2016. Jes´us Ram´on P´erez L´opez. “Contribuci´on a los m´etodos de optimizaci´on basados en procesos naturales y su aplicaci´on a la medida de antenas en campo pr´oximo”. PhD thesis. Universidad de Cantabria, 2005 Arduino. Arduino IDE 1.8.19. 2016. url: https://www.arduino.cc/ Y.A. Cengel and M.A. Boles. Thermodynamics: An Engineering Approach. Cengel series in engineering thermal-fluid sciences. McGraw-Hill, 2011. isbn: 9780071311113 Felipe Ferreira and Carmelo Bastos-Filho. “Um Sistema de Baixo Custo para Monitoramento do Consumo de Energia em Casas Inteligentes”. In: Revista de Engenharia e Pesquisa Aplicada 3 (Dec. 2016). doi: 10.25286/repa.v3i1.270. G.S.Bodvarsson Yu-Shu Wu H.H.Liu. “A triple-continuum approach for modeling flow and transport processes in fractured rock”. In: Journal of Contaminant Hydrology 73.1-4 (Sept. 2004), pp. 145–179 Marcial Yam Cervantes, Ram´on Pali Casanova, and Jos´e Zavala Lor´ıa. “Aplicabilidad de la criticidad en el mantenimiento de equipos”. In: Project Design and Management 1.1 (Mar. 2019). url: https://www.mlsjournals.com/Project- DesignManagement/article/view/168. Ca˜non Benhur Olarte William Botero Marcela. “T´ecnicas de mantenimiento predictivo utilizadas en la industria”. In: Scientia Et Technica (2010). issn: 0122-1701. Thierry Erbessd. “The 7 Most Important aspects about Condition, System & Equipment Monitoring”. In: ERBESSD Instruments (June 2022). https://www.erbessdinstruments.com/articles/condition-monitoring/ Microsoft Corporation. PowerBI Desktop. Version 2.110.1161.0. Oct. 1, 2022. url: https://hadoop.apache.org. Saeed Khankalantary, Saeed Ranjbaran, and Saeed Ebadollahi. “Simplifcation of calibration of low-cost MEMS accelerometer and its temperature compensation without accurate laboratory equipment”. In: Measurement Science and Technology 32.4 (2021), p. 045102. |
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Universidad Nacional de Colombia - Sede Bogotá |
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Atribución-NoComercial 4.0 Internacionalhttp://creativecommons.org/licenses/by-nc/4.0/info:eu-repo/semantics/openAccesshttp://purl.org/coar/access_right/c_abf2González Roldán, Felipe4d77c8da423356b32054795b6df03a1bSierra Sierra, Nelson Ariel5a6cbb4010d2932291c957d5b6d3f28fnasierras [0009000230235532]2023-07-07T14:06:48Z2023-07-07T14:06:48Z2023-06-14https://repositorio.unal.edu.co/handle/unal/84157Universidad Nacional de ColombiaRepositorio Institucional Universidad Nacional de Colombiahttps://repositorio.unal.edu.co/ilustraciones, fotografías a colorThis project addresses the problem of the correct diagnosis of air conditioning and refrigeration systems compressors, using instrumentation easily found in the market. For this work, the use of an Espressif ESP32 controller programmed under the Arduino language is proposed, in addition to sensors and algorithms based on trends that allow real-time knowledge of relevant variables of the process that allows anticipating to the failures under a scheme condition-based maintenance.Este proyecto aborda el problema del diagnóstico correcto de compresores de sistemas de aire acondicionado y refrigeración, utilizando instrumentación fácil de encontrar en el mercado. Para este trabajo se propone el uso de un controlador Espressif ESP32 programado bajo el lenguaje Arduino, además de sensores y algoritmos basados en tendencias que permitan conocer en tiempo real de variables relevantes del proceso que permitan anticiparse a los fallos bajo un esquema de mantenimiento basado en condiciones. (Texto tomado de la fuente)MaestríaMagíster en Ingeniería - Automatización IndustrialProcess and Machines Automation, Instrumentation, Tecnology for Education150 páginas + anexoapplication/pdfapplication/vnd.ms-powerpointengSymbionte - Development of a low-cost IOT device focused on protection and monitoring compressors in air-conditioning and refrigeration applicationsSymbionte - Desarrollo de un dispositivo IOT enfocado en la protección y monitorización de compresores en aplicaciones de aire acondicionado y refrigeraciónTrabajo de grado - Maestríainfo:eu-repo/semantics/masterThesisinfo:eu-repo/semantics/acceptedVersionTexthttp://purl.org/redcol/resource_type/TMBogotá - Ingeniería - Maestría en Ingeniería - Automatización IndustrialFacultad de IngenieríaBogotá,ColombiaUniversidad Nacional de Colombia - Sede BogotáDoug Boucher. “Mutualism Judith L. Bronstein, editor.” In: Integrative and Comparative Biology 56 (July 2016), icw071. doi: 10.1093/icb/icw071.Equip redaccio. “Wilson, E. O. (1975). Sociobiology. The New Synthesis”. In: Papers. Revista de Sociologia 19 (Jan. 1983), p. 149. doi: 10.5565/rev/papers/v19n0.1342.Robert Poulin. “Evolutionary ecology of parasites”. In: Evolutionary ecology of parasites. Princeton university press, 2011.Michael Smith and Karlson Hargroves. “Factor Five Textbook - Paddock to Plate Chapter - Dairy Farm, Supermarket, Bakery, Restaurant and Fast Food Restaurant case studies”. In: Mar. 2010.UPME. Primer balance de Energ´ıa Util para Colombia y Cuantifcaci´on de las Perdidas ´ energ´eticas relacionadas y la brecha de efciencia energ´etica. Apr. 2019.Jay Lee et al. “Intelligent maintenance systems and predictive manufacturing”. In: Journal of Manufacturing Science and Engineering 142.11 (2020)David Leonardo Pinz´on Ni˜no. “Panorama de aplicaci´on de internet de las cosas (IoT)”. In: (2016).Adel A Kader. “Increasing food availability by reducing postharvest losses of fresh produce”. In: V International Postharvest Symposium 682. 2004, pp. 2169–2176.Rosa S Rolle. “Improving postharvest management and marketing in the Asia-Pacifc region: issues and challenges”. In: Postharvest management of fruit and vegetables in the Asia-Pacifc region 1.1 (2006), pp. 23–31.Tristram Stuart. Waste: Uncovering the global food scandal. WW Norton & Company, 2009.Jenny Gustavsson et al. Global food losses and food waste. 2011.Tina Birmpili. “Montreal Protocol at 30: The governance structure, the evolution, and the Kigali Amendment”. In: Comptes Rendus Geoscience 350.7 (2018), pp. 425–431.William C. Reynolds and Henry C. Perkins. Engineering thermodynamics / William C. Reynolds, Henry C. Perkins. 2d ed. McGraw-Hill New York, 1977, xii, 690 p. isbn: 0070520461R.J. Dossat. Principios de refrigeraci´on. Compa˜nıa Editorial Continental, 1980. isbn: 9789682602016P.J. Rapin, J. Jacquard, and P. Jacquard. Instalaciones Frigorifcas - Refrigerating Facilities 1: Fisica Aplicada. Acceso R´apido. 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In: Measurement Science and Technology 32.4 (2021), p. 045102.Industria del aire acondicionadoIndustria de equipos para calefacciónIndustria de la calefacción y la ventilaciónAir conditioning industryHeating equipment industryHeating and ventilation industryData AdquisitionIIOTRefrigerationAir ConditioningCondition basedMaintenanceArduinoESP32Adquisición de datosIIOTRefrigeraciónAire AcondicionadoMantenimientoBasado en condiciónORIGINAL80076536.2023.pdf80076536.2023.pdfTesis de Maestría en Ingeniería - Automatización Industrialapplication/pdf86783958https://repositorio.unal.edu.co/bitstream/unal/84157/6/80076536.2023.pdf1d818c085e6ae070cac79f6c3424bdc4MD5680076536.2023_Slides.pdf80076536.2023_Slides.pdfPresentaciónapplication/pdf6503956https://repositorio.unal.edu.co/bitstream/unal/84157/3/80076536.2023_Slides.pdf4d49d349f00040315e78500df5dc6f0aMD53LICENSElicense.txtlicense.txttext/plain; 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