Mostrar el registro sencillo del documento

dc.rights.licenseAtribución-NoComercial-SinDerivadas 4.0 Internacional
dc.contributor.advisorSofrony Esmeral, Jorge
dc.contributor.authorGordillo Tous, Karen Sofía
dc.date.accessioned2020-02-18T17:56:22Z
dc.date.available2020-02-18T17:56:22Z
dc.date.issued2019
dc.identifier.urihttps://repositorio.unal.edu.co/handle/unal/75638
dc.description.abstractThis project contemplates the design of a test bench for veri cation of the hardware of variable speed drives, with power between 1 and 40 HP at 440V, as well as the design of the veri cation protocol of: open circuit and short circuit fault in recti er and inverter, state of DC link, frecuency reference. Measurements were made with three drives (5, 7.5 and 10 hp) for veri cation of short circuit in the recti er and the inverter and veri cation of open circuit in the recti er. Discharge test were made with two drives (5 and 10 HP) to calculare the RC constant with two di erent methods and determine their beahaviour, the results are analyzed for di erent timeslots. The normalized DC current method, for detection and isolation of open circuit fault in the inverter, was implemented, measurements were made for a drive of 7.5 HP that has the fault and two motors of 5HP; di erent speed references were used (2.5, 5, 7.5, 10 Hz), the results are analyzed. The complete design of the bench test is presentes with the material list and the electric drawings, as well as the test protocol that explains step by step the veri cation procedure. The fault detection and isolation of the open circuit fault in the inverter had an accuracy of 94.8% and 100% respectevely, a di erent method is proposed to improve the detection. The proposed calculation method of degradation does not show accuracy, nevertheless, can give an idea of the degradation over time in the DC link.
dc.description.abstractEste proyecto contempla el diseño de un banco de pruebas para verificación del hardware de variadores de velocidad industriales trifásicos con potencias entre 1 y 40 hp a 440 V, as__ como el desarrollo del protocolo de verificación de: falla de circuito abierto y corto circuito en rectificador e inversor, estado de la junta DC y frecuencia de referencia. Se realizaron mediciones en tres variadores de velocidad (5, 7.5 y 10 hp) para verificación de corto circuito en rectificador e inversor y verificación de circuito abierto en rectificador. Se hicieron pruebas de descarga con dos variadores de velocidad (5 y 10 hp) para calcular la constante RC con dos métodos y determinar el comportamiento de estos, se analizaron los resultados para diferentes intervalos de tiempo. Finalmente se implementó del método normalizado de corriente DC para detección y aislamiento de fallo de circuito abierto en el inversor, se realizaron mediciones con un variador de 7.5 HP que presenta la falla y dos motores de 5 HP; se usaron diferentes referencias de velocidad (2.5, 5, 7.5, 10 Hz) y se analizan los resultados. Se presenta el diseño completo del banco de pruebas con lista de materiales y planos eléctricos as__ como el protocolo de pruebas que explica paso a paso el procedimiento de verificación. La detección y aislamiento del fallo del circuito abierto en el inversor tuvieron una exactitud del 94,8% y el 100% respectivamente, se propone un método diferente para mejorar la detección. El método de cálculo de degradación propuesto no muestra exactitud en el cálculo, sin embargo, puede dar una idea de la degradación de la Junta DC en el tiempo
dc.format.extent110
dc.format.mimetypeapplication/pdf
dc.language.isospa
dc.rightsDerechos reservados - Universidad Nacional de Colombia
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/4.0/
dc.subject.ddcIngeniería y operaciones afines
dc.titleConstrucción de un banco de pruebas para variadores de velocidad trifásicos de 1hp a 40 hp que permita verificar el comportamiento y la detección y aislamiento de falla de circuito abierto en la etapa de inversión
dc.typeOtro
dc.rights.spaAcceso abierto
dc.description.additionalMagíster en Ingeniería Mecánica. Línea de Investigación: Automatización
dc.type.driverinfo:eu-repo/semantics/other
dc.type.versioninfo:eu-repo/semantics/acceptedVersion
dc.description.degreelevelMaestría
dc.publisher.branchUniversidad Nacional de Colombia - Sede Bogotá
dc.relation.references[Abramik et al., 2003] Abramik, S., Sleszynski, W., Nieznanski, J., and Piquet, H. (2003). A diagnostic method for on-line fault detection and localization in VSI-fed AC drives. pages 2{4. [Alepuz Men endez, 2004] Alepuz Men endez, S. (2004). Aportaci on al Control del Convertidor CC/CA de Tres Niveles. Tesis doctoral, Universitat Polit ecnica de Catalunya Departament d'Enginyeria Electr onica. [Alexander and Sadiku, 2013] Alexander, C. and Sadiku, M. (2013). Fundamentos de circuitos el ectricos, chapter 7, pages 218{222. McGraw-Hill, 5th edition. [Campos-Delgado and Espinoza-Trejo, 2011] Campos-Delgado, D. U. and Espinoza-Trejo, D. R. (2011). An Observer-Based Diagnosis Scheme for Single and Simultaneous Open- Switch Faults in Induction Motor Drives. IEEE Transactions on Industrial Electronics, 58(2):671{679. [de Araujo Ribeiro et al., 2003] de Araujo Ribeiro, R. L., Jacobina, C. B., da Silva, E. R. C., and Lima, A. M. N. (2003). Fault detection of open-switch damage in voltage-fed PWM motor drive systems. IEEE Transactions on Power Electronics, 18(2):587{593. [Diallo et al., 2005] Diallo, D., Benbouzid, M. E. H., Hamad, D., and Pierre, X. (2005). Fault Detection and Diagnosis in an Induction Machine Drive: A Pattern Recognition Approach Based on Concordia Stator Mean Current Vector. IEEE Transactions on Energy Conversion, 20(3):512{519. [Fluke, 2012] Fluke (2012). How to measure output voltage from a VFD to a motor. [Fuchs, 2003] Fuchs, F. W. (2003). Some diagnosis methods for voltage source inverters in variable speed drives with induction machines - a survey. In Industrial Electronics Society, 2003. IECON '03. The 29th Annual Conference of the IEEE, volume 2, pages 1378{1385 Vol.2. [Hsu, 2011] Hsu, H. (2011). Schaums outlines signals and systems. In Schaums outlines signals and systems, chapter 5 and 6, pages 193, 261. McGraw-Hill, 2nd edition. [Kadan k, 1998] Kadan k, P. (1998). A Brief survey of AC Drive Fault Diagnosis and Detection. Technical report, The Czech Technical University. [Kastha and Bose, 1994] Kastha, D. and Bose, B. K. (1994). Investigation of fault modes of voltage-fed inverter system for induction motor drive. IEEE Transactions on Industry Applications, 30(4):1028{1038. [Kuphaldt, 2005] Kuphaldt, T. R. (2005). Lessons In Electric Circuits, volume IV. [Lu and Sharma, 2009] Lu, B. and Sharma, S. K. (2009). A Literature Review of IGBT Fault Diagnostic and Protection Methods for Power Inverters. IEEE Transactions on Industry Applications, 45(5):1770{1777. [Manrique et al., 2012a] Manrique, R. F. et al. (2012a). Detecci on y diagnostico de fallas en turbinas de viento usando t ecnicas de miner a de datos. Director: Dr. C Jorge Sofrany Esmeral. Tesis de m aster en sistemas y computaci on. Universidad Nacional de Colombia. [Manrique et al., 2012b] Manrique, R. F., Giraldo, F. A., and Esmeral, J. S. (2012b). Fault detection and diagnosis for wind turbines using data-driven approach. In 2012 7th Colombian Computing Congress (CCC), pages 1{6. IEEE. [Mart n, 2012] Mart n, J. (2012). Protecci on de un site contra variaciones en el suministro de energ a. capitulo 6. protecci on contra sobrecorrientes corto circuito. Master's thesis, Universidad Nacional Aut onoma de M exico. [Mendes and Cardoso, 1999] Mendes, A. M. S. and Cardoso, A. J. M. (1999). Voltage source inverter fault diagnosis in variable speed AC drives, by the average current Park's vector approach. In Electric Machines and Drives, 1999. International Conference IEMD '99, pages 704{706. [Muhammad, 2004] Muhammad, R. (2004). Electr onica de potencia, volume 968, chapter 3, pages 37{91. [Naukkarinen, 2012] Naukkarinen, R. (2012). Drive module testing method comparison: For drive service workshop. [Oppenheim and Willsky, 1997] Oppenheim, A. and Willsky, A. (1997). Se~nales y sistemas, chapter 7, pages 515{520. Prentice Hall, 2nd edition. [Patton et al., 2000] Patton, R. J., Frank, P. M., and Clark, R. N. (2000). Issues of Fault Diagnosis for Dynamic Systems. Springer Science & Business Media. [Pecina-Sanchez et al., 2012] Pecina-Sanchez, A., Campos-Delgado, D. U., Arce-Santana, E., and Espinoza-Trejo, D. R. (2012). Fault Diagnosis in Variable Speed Drives by Pattern Recognition and Probabilistic Measures. IFAC Proceedings Volumes, 45(20):1394{1399. [Pecina-S anchez et al., 2011] Pecina-S anchez, J. A., Campos-Delgado, D. U., and Espinoza- Trejo, D. R. (2011). Multiple fault diagnosis in variable speed drives through current measurements. In 2011 8th International Conference on Electrical Engineering, Computing Science and Automatic Control, pages 1{6. [Pulgarin and Esmeral, 2016] Pulgarin, E. J. L. and Esmeral, J. I. S. (2016). Data-driven fdi for wind farms using w-svm. In 2016 IEEE International Symposium on Intelligent Control (ISIC), pages 1{6. IEEE. [Rahman et al., 2018] Rahman, M. F., Patterson, D., Cheok, A., and Betz, R. (2018). 30 - motor drives. In Rashid, M. H., editor, Power Electronics Handbook (Fourth Edition), pages 945 { 1021. Butterworth-Heinemann, fourth edition edition. [Rothenhagen and Fuchs, 2004] Rothenhagen, K. and Fuchs, F. W. (2004). Performance of diagnosis methods for IGBT open circuit faults in voltage source active recti ers. In 2004 IEEE 35th Annual Power Electronics Specialists Conference (IEEE Cat. No.04CH37551), volume 6, pages 4348{4354 Vol.6. [Shakweh, 2018] Shakweh, Y. (2018). 29 - drive types and speci cations. In Rashid, M. H., editor, Power Electronics Handbook (Fourth Edition), pages 913 { 944. Butterworth- Heinemann, fourth edition edition. [Tan and Putra, 2011] Tan, K. K. and Putra, A. S. (2011). Electric Drives, pages 45{85. Springer London, London. [Vogt et al., 2008] Vogt, J. P., Fr ager, C., Gaubisch, T., Kiel, E., Hilfert, S., Witte, S., Sievers, R., Guhl, R.-T., G otz, O., and Kohlmeier, D. (2008). The drive system and its components, pages 75{255. Springer Berlin Heidelberg, Berlin, Heidelberg. [Zidani et al., 2008] Zidani, F., Diallo, D., Benbouzid, M. E. H., and Nait-Said, R. (2008). A Fuzzy-Based Approach for the Diagnosis of Fault Modes in a Voltage-Fed PWM Inverter Induction Motor Drive. IEEE Transactions on Industrial Electronics, 55(2):586{593.
dc.rights.accessrightsinfo:eu-repo/semantics/openAccess
dc.subject.proposalVariable speed drive
dc.subject.proposalVariador de velocidad
dc.subject.proposalBanco de pruebas
dc.subject.proposalTest bench
dc.subject.proposalProtocol
dc.subject.proposalProtocolo
dc.subject.proposalIdenti cación y aislamiento
dc.subject.proposalIdenti cation and isolation
dc.subject.proposalFault
dc.subject.proposalFallo
dc.subject.proposalNormalized DC current method
dc.subject.proposalMétodo normalizado de corriente DC
dc.type.coarhttp://purl.org/coar/resource_type/c_1843
dc.type.coarversionhttp://purl.org/coar/version/c_ab4af688f83e57aa
dc.type.contentText
oaire.accessrightshttp://purl.org/coar/access_right/c_abf2


Archivos en el documento

Thumbnail
Thumbnail

Este documento aparece en la(s) siguiente(s) colección(ones)

Mostrar el registro sencillo del documento

Atribución-NoComercial-SinDerivadas 4.0 InternacionalEsta obra está bajo licencia internacional Creative Commons Reconocimiento-NoComercial 4.0.Este documento ha sido depositado por parte de el(los) autor(es) bajo la siguiente constancia de depósito