Location of power quality stationary disturbances sources in distribution power grids
ilustraciones (principalmente a color), diagramas
- Autores:
-
Garzón, Camilo Andrés
- Tipo de recurso:
- Doctoral thesis
- Fecha de publicación:
- 2023
- Institución:
- Universidad Nacional de Colombia
- Repositorio:
- Universidad Nacional de Colombia
- Idioma:
- eng
- OAI Identifier:
- oai:repositorio.unal.edu.co:unal/86338
- Palabra clave:
- 620 - Ingeniería y operaciones afines::629 - Otras ramas de la ingeniería
Equalizers (Electronics)
Causalidad (Física)
Redes eléctricas
Ecualizadores (Electrónica)
Síntesis de redes electrónicas
Armónicos (Ondas eléctricas)
Perturbación (Matemáticas)
Causality (Physics)
Electric networks
Electric networks synthesis
Harmonics (Electric waves)
Perturbation (mathematics)
Causalidad
Sistemas de distribución
Distorsión armónica
Fuente armónica
Perturbaciones estacionarias de calidad de potencia
Problema de asignación de responsabilidades
Causality
Distribution system
Harmonic distortion
Harmonic source
Power ouality stationary disturbances
Responsibility assignment problem
- Rights
- openAccess
- License
- Reconocimiento 4.0 Internacional
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|
dc.title.eng.fl_str_mv |
Location of power quality stationary disturbances sources in distribution power grids |
dc.title.translated.eng.fl_str_mv |
Location of Power Quality Stationary Disturbances Sources in Distribution Power Grids |
dc.title.translated.spa.fl_str_mv |
Localización de perturbaciones estacionarias de calidad de potencia en Redes de distribución |
title |
Location of power quality stationary disturbances sources in distribution power grids |
spellingShingle |
Location of power quality stationary disturbances sources in distribution power grids 620 - Ingeniería y operaciones afines::629 - Otras ramas de la ingeniería Equalizers (Electronics) Causalidad (Física) Redes eléctricas Ecualizadores (Electrónica) Síntesis de redes electrónicas Armónicos (Ondas eléctricas) Perturbación (Matemáticas) Causality (Physics) Electric networks Electric networks synthesis Harmonics (Electric waves) Perturbation (mathematics) Causalidad Sistemas de distribución Distorsión armónica Fuente armónica Perturbaciones estacionarias de calidad de potencia Problema de asignación de responsabilidades Causality Distribution system Harmonic distortion Harmonic source Power ouality stationary disturbances Responsibility assignment problem |
title_short |
Location of power quality stationary disturbances sources in distribution power grids |
title_full |
Location of power quality stationary disturbances sources in distribution power grids |
title_fullStr |
Location of power quality stationary disturbances sources in distribution power grids |
title_full_unstemmed |
Location of power quality stationary disturbances sources in distribution power grids |
title_sort |
Location of power quality stationary disturbances sources in distribution power grids |
dc.creator.fl_str_mv |
Garzón, Camilo Andrés |
dc.contributor.advisor.none.fl_str_mv |
Pavas Martínez, Fabio Andrés Blanco Castañeda, Ana María |
dc.contributor.author.none.fl_str_mv |
Garzón, Camilo Andrés |
dc.contributor.researchgroup.spa.fl_str_mv |
Programa de Investigacion sobre Adquisicion y Analisis de Señales Paas-Un Institute of Electric Power Systems and High Voltage Engineering (IEEH) of the TUD Dresden University of Technology |
dc.contributor.orcid.spa.fl_str_mv |
Garzón, Camilo Andrés [000000021658179X] |
dc.contributor.scopus.spa.fl_str_mv |
Garzón, Camilo Andrés [56719488200] |
dc.subject.ddc.spa.fl_str_mv |
620 - Ingeniería y operaciones afines::629 - Otras ramas de la ingeniería |
topic |
620 - Ingeniería y operaciones afines::629 - Otras ramas de la ingeniería Equalizers (Electronics) Causalidad (Física) Redes eléctricas Ecualizadores (Electrónica) Síntesis de redes electrónicas Armónicos (Ondas eléctricas) Perturbación (Matemáticas) Causality (Physics) Electric networks Electric networks synthesis Harmonics (Electric waves) Perturbation (mathematics) Causalidad Sistemas de distribución Distorsión armónica Fuente armónica Perturbaciones estacionarias de calidad de potencia Problema de asignación de responsabilidades Causality Distribution system Harmonic distortion Harmonic source Power ouality stationary disturbances Responsibility assignment problem |
dc.subject.armarc.eng.fl_str_mv |
Equalizers (Electronics) |
dc.subject.lemb.spa.fl_str_mv |
Causalidad (Física) Redes eléctricas Ecualizadores (Electrónica) Síntesis de redes electrónicas Armónicos (Ondas eléctricas) Perturbación (Matemáticas) |
dc.subject.lemb.eng.fl_str_mv |
Causality (Physics) Electric networks Electric networks synthesis Harmonics (Electric waves) Perturbation (mathematics) |
dc.subject.proposal.spa.fl_str_mv |
Causalidad Sistemas de distribución Distorsión armónica Fuente armónica Perturbaciones estacionarias de calidad de potencia Problema de asignación de responsabilidades |
dc.subject.proposal.eng.fl_str_mv |
Causality Distribution system Harmonic distortion Harmonic source Power ouality stationary disturbances Responsibility assignment problem |
description |
ilustraciones (principalmente a color), diagramas |
publishDate |
2023 |
dc.date.issued.none.fl_str_mv |
2023-09 |
dc.date.accessioned.none.fl_str_mv |
2024-07-02T15:19:37Z |
dc.date.available.none.fl_str_mv |
2024-07-02T15:19:37Z |
dc.type.spa.fl_str_mv |
Trabajo de grado - Doctorado |
dc.type.driver.spa.fl_str_mv |
info:eu-repo/semantics/doctoralThesis |
dc.type.version.spa.fl_str_mv |
info:eu-repo/semantics/publishedVersion |
dc.type.coar.spa.fl_str_mv |
http://purl.org/coar/resource_type/c_db06 |
dc.type.coarversion.spa.fl_str_mv |
http://purl.org/coar/version/c_970fb48d4fbd8a85 |
dc.type.content.spa.fl_str_mv |
Text |
dc.type.redcol.spa.fl_str_mv |
http://purl.org/redcol/resource_type/TD |
format |
http://purl.org/coar/resource_type/c_db06 |
status_str |
publishedVersion |
dc.identifier.uri.none.fl_str_mv |
https://repositorio.unal.edu.co/handle/unal/86338 |
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/86338 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 |
A. E. Emanuel, R. L. ; Testa, A.: Power definitions for circuits with nonlinear and unbalanced loads — The IEEE standard 1459-2010. In: 2012 IEEE Power and Energy Society General Meeting, San Diego, CA, 2012, S. 1–6 Agudelo-Mart´ınez, D. ; Garz´on, C. ; Pavas, A.: Interaction of power quality disturbances within 2–150 kHz (supraharmonics): Analytical framework. In: 2018 18th International Conference on Harmonics and Quality of Power (ICHQP), 2018. – ISSN 2164–0610, S. 1–7 Aziz, T. ; Nandi, S. K. ; Rahman, M. S. ; Riadh, R. R.: Study of power quality with changing customer loads in an urban distribution network. In: 2015 3rd International Conference on Green Energy and Technology (ICGET), 2015, S. 1–6 AY, NIHAT ; POLANI, DANIEL: INFORMATION FLOWS IN CAUSAL NETWORKS. In: Advances in Complex Systems 11 (2008), Nr. 01, 17-41. http://dx.doi.org/10.1142/S0219525908001465. – DOI 10.1142/S0219525908001465 Basmann, R. L.: A Note on the Statistical Testability of ’Explicit Causal Chains’ Against the Class of ’Interdependent’ Models. In: Journal of the American Statistical Association 60 (1965), Nr. 312, 1080–1093. http: //dx.doi.org/10.2307/2283407. – DOI 10.2307/2283407. – ISSN 01621459 Blanco, A. M.: Stochastic harmonic emission model of aggregate residential customers, Technische Universit¨at Dresden, Diss., 2018 Kapitel 1. In: Bollen, Math H.: Overview of Power Quality and Power Quality Standards. Wiley-IEEE Press, 2000. – ISBN 9780470546840, S. 1–34 Bonacich, Phillip: Some unique properties of eigenvector centrality. In: Social Networks 29 (2007), Nr. 4, 555-564. http://dx.doi.org/10.1016/j.socnet. 2007.04.002. – DOI 10.1016/j.socnet.2007.04.002. – ISSN 0378–8733 Buchhokz, F.: Understanding the Correct Power Concept of Active and Reactive Power. In: Selbsverlag, Munchen, 1950 Cristaldi, L. ; Ferrero, A.: Harmonic power flow analysis for the measurement of the electric power quality. In: IEEE Transactions on Instrumentation and Measurement 44 (1995), Nr. 3, S. 683–685. http://dx.doi.org/10.1109/ 19.387308. – DOI 10.1109/19.387308 Chidurala, A. ; Saha, T. K. ; Mithulananthan, N.: Harmonic impact of high penetration photovoltaic system on unbalanced distribution networks - Learning from an urban photovoltaic network. In: IET Renewable Power Generation 10 (2017), Nr. 4, S. 485–494. http://dx.doi.org/10.1049/iet-rpg. 2015.0188. – DOI 10.1049/iet–rpg.2015.0188 Czarnecki, L. S.: What is wrong with the Budeanu concept of reactive and distortion power and why it should be abandoned. In: IEEE Transactions on Instrumentation and Measurement, 1987, S. 834–837 Czarnecki, L. S.: Orthogonal decomposition of the currents in a 3-phase nonlinear asymmetrical circuit with a nonsinusoidal voltage source. In: IEEE Transactions on Instrumentation and Measurement, 1988, S. 30–34 Czarnecki, L. S.: Currents’ Physical Components (CPC) concept: A fundamental of power theory. In: 2008 International School on Nonsinusoidal Currents and Compensation, Lagow, Poland, 2008, S. 1–11 Depenbrock, M.: The FBD-method, a generally applicable tool for analyzing power relations. In: IEEE Transactions on Power Systems 8 (1993), Nr. 2, S. 381–387. http://dx.doi.org/10.1109/59.260849. – DOI 10.1109/59.260849 Davis, E. J. ; Emanuel, A. E. ; Pileggi, D. J.: Evaluation of singlepoint measurements method for harmonic pollution cost allocation. In: IEEE Transactions on Power Delivery 15 (2000), Jan, Nr. 1, S. 14–18. http: //dx.doi.org/10.1109/61.847222. – DOI 10.1109/61.847222. – ISSN 0885– 8977 Dugan, Roger C.: Electrical power systems quality. Nueva York McGraw-Hill, 2003. – ISBN:9780071761550 Emanuel, A. E. ; Orr, J. A.: Fryze’s power definition: Some limitations. In: 2012 IEEE 15th International Conference on Harmonics and Quality of Power, 2012. – ISSN 2164–0610, S. 518–522 Fryze, S.: Effective Reactive and Apparent Powers in Circuits with Nonsinusoidal Waveforms. In: Electrotehn Zeitshrift Bd. 53, 1932, S. 596–99, 625–27, 700–02 Garzón, C.: Evaluación de Causalidad para Perturbaciones Estacionarias de Calidad de Energía, Universidad Nacional de Colombia, Facultad de Ingeniería, Diplomarbeit, 2016 Garz´on, Camilo A. ; Kannan, Shrinath ; Blanco, Ana M. ; Romero, Miguel ; Meyer, Jan ; Pavas, Andr´es: Power Quality Issues in AC Islanded Microgrids: Mitigation and Commonly Used Control Strategies. In: Simposio Internacional sobre la Calidad de la Energ´ıa El´ectrica - SICEL 10 (2021), mar. https://revistas.unal.edu.co/index.php/SICEL/article/view/97132 Garz´on, Camilo ; Pavas, Andr´es: Potential Use of Fryze’s Approach-Based Power Theories in Waveform Distortion Contribution Assessment. In: Revista UIS Ingenier´ıas. Garz´on, C. ; Pavas, A.: Causality assessment for power quality stationary disturbances by means of centrality index. In: 2015 IEEE Workshop on Power Electronics and Power Quality Applications (PEPQA), 2015, S. 1–5 Garz´on, C. ; Pavas, A.: Laplacian eigenvector centrality as tool for assessing causality in power quality. In: 2017 IEEE Manchester PowerTech, 2017, S. 1–6 Garz´on, Camilo ; Pavas, Andr´es: Review of Responsibilities Assignment Methods for Harmonic Emission. In: 2019 IEEE Milan PowerTech, 2019, S. 1–6 Garz´on, Camilo A. ; Pavas, Andres ; Kannan, Shrinath ; Blanco, Ana M. ; Romero, Miguel ; Quintero, Vanessa ; Meyer, Jan: Assignment of Responsibilities for Power Quality Stationary Disturbances in an Islanded Microgrids. In: Simposio Internacional sobre la Calidad de la Energ´ıa El´ectrica - SICEL 10 (2023), mar. https://revistas.unal.edu.co/index.php/SICEL/article/ view/97104 Granger, C. W. J.: Investigating Causal Relations by Econometric Models and Cross-spectral Methods. In: Econometrica 37 (1969), Nr. 3, 424–438. http: //www.jstor.org/stable/1912791. – ISSN 00129682, 14680262 Grossman, S.I.: Álgebra Lineal. McGraw-Hill Interamericana de España S.L., 2008 (Elibro Catedra). – ISBN 9789701065174 Hamouda, S. H. ; Aleem, S. H. E. A. ; Ibrahim, A. M.: Harmonic resonance index and resonance severity estimation for shunt capacitor applications in industrial power systems. In: 2017 Nineteenth International Middle East Power Systems Conference (MEPCON), 2017, S. 527–532 Kapitel 11. In: Hamilton, James D.: Vector Autoregressions. Princeton University Press, 1994. – ISBN 0–691–04289–6, S. 302–307 Hansen, S. ; Nielsen, P. ; Blaabjerg, F.: Harmonic cancellation by mixing nonlinear single-phase and three-phase loads. In: IEEE Transactions on Industry Applications 36 (2000), Jan, Nr. 1, S. 152–159. http://dx.doi.org/ 10.1109/28.821810. – DOI 10.1109/28.821810. – ISSN 0093–9994 Heydt, G. T. ; Patil, H. U. ; Loehr, J. ; LaRose, T.: Harmonic resonance assessment for transmission class shunt capacitors. In: 2016 IEEE/PES Transmission and Distribution Conference and Exposition (T D), 2016. – ISSN 2160–8563, S. 1–5 ICONTEC: CALIDAD DE LA POTENCIA ELÉCTRICA. LIMITES Y METODOLOGÍA DE EVALUACIÓN EN PUNTO DE CONEXIÓN COMÚN. In: ICONTEC NTC 5001 (2008), May, S. 1–51 ICONTEC: CALIDAD DE LA POTENCIA ELÉCTRICA (CPE). DEFINICIONES Y TÉRMINOS FUNDAMENTALES. In: ICONTEC NTC 5000 (2013), June, S. 1–20 ICONTEC: COMPATIBILIDAD ELECTROMAGNÉTICA (CEM). PARTE 1. GENERALIDADES. SECCIÓN 1: APLICACIÓN E INTERPRETACIÓN DE DEFINICIONES Y TÉRMINOS FUNDAMENTALES. In: ICONTEC NTC-IEC 61000-1-1 (2000), December, S. 1–29 IEC: Part 4-13: Testing and measurement techniques - Harmonics and interharmonics including mains signalling at a.c. power port, low frequency immunity tests. In: Electromagnetic compatibility (EMC) - IEC Std. 61000-4-13 (2002), June, S. 1–55 IEC: Part 2-12: Environment - Compatibility levels for low-frequency conducted disturbances and signalling in public medium-voltage power supply systems. In: Electromagnetic compatibility (EMC) - IEC Std. 61000-2-12 (2003), June, S. 1–55 IEC: Pat 2-2: Environment - Compatibility levels for low-frequency conducted disturbances and signaling in public low-voltage power supply systems. In: Electromagnetic compatibility (EMC) - IEC Std. 61000-2-2 (2003), June, S. 1–29 Testing and measurement techniques – Power quality measurement methods. : Testing and measurement techniques – Power quality measurement methods, 2008. – 1–292 S. IEC: Part 3-6: Limits - Assessment of emission limits for the connection of distorting installations to MV, HV and EHV power systems. In: Electromagnetic compatibility (EMC) - IEC TR Std. 61000-3-6 (2008), June, S. 1–29 General guide on harmonics, interharmonics measurements and instrumentation, for power supply systems and equipment connected thereto. : General guide on harmonics, interharmonics measurements and instrumentation, for power supply systems and equipment connected thereto, 2009. – 1–41 S. Part 4-7: General guide on harmonics, interharmonics measurements and instrumentation, for power supply systems and equipment connected thereto. In: Electromagnetic compatibility (EMC) - IEC Std. 61000-4-7 (2009), June, S. 1–29 IEC: Part 3-12: Limits - Limits for harmonic currents produced by equipment connected to public low-voltage systems with input current >16 A and ≤75 A per phase. In: Electromagnetic compatibility (EMC) - IEC Std. 61000-3-12 (2011), June, S. 1–29 IEC: Part 3-2: Limits - Limits for harmonic current emissions (equipment input current 16 A per phase). In: Electromagnetic compatibility (EMC) - IEC Std. 61000-3-2 (2014), June, S. 1–29 IEC: Part 4-30: Testing and measurement techniques – Power quality measurement methods. In: Electromagnetic compatibility (EMC) - IEC Std. 61000-4-30 (2015), June, S. 1–29 IEEE: IEEE Recommended Practice for Monitoring Electric Power Quality. In: IEEE Std 1159-2009 (Revision of IEEE Std 1159-1995) (2009), June, S. c1–81. http://dx.doi.org/10.1109/IEEESTD.2009.5154067. – DOI 10.1109/IEEESTD.2009.5154067 IEEE: IEEE Standard Definitions for the Measurement of Electric Power Quantities Under Sinusoidal, Nonsinusoidal, Balanced, or Unbalanced Conditions. In: IEEE Std 1459-2010 (Revision of IEEE Std 1459-2000) (2010), March, S. 1–50. http://dx.doi.org/10.1109/IEEESTD.2010.5439063. – DOI 10.1109/IEEESTD.2010.5439063 IEEE: IEEE Standard Definitions for the Measurement of Electric Power Quantities Under Sinusoidal, Nonsinusoidal, Balanced, or Unbalanced Conditions. In: IEEE Std 1459-2010 (Revision of IEEE Std 1459-2000) (2010), March, S. 1–50. http://dx.doi.org/10.1109/IEEESTD.2010.5439063. – DOI 10.1109/IEEESTD.2010.5439063 IEEE: IEEE Recommended Practice and Requirements for Harmonic Control in Electric Power Systems. In: IEEE Std 519-2014 (Revision of IEEE Std 519-1992) (2014), June, S. 1–29. http://dx.doi.org/10.1109/IEEESTD.2014. 6826459. – DOI 10.1109/IEEESTD.2014.6826459 Kannan, Shrinath ; Blanco, Ana M. ; Garz´on, Camilo ; Pavas, Andr´es ; Meyer, Jan: Harmonic Impedance Characteristics in an Islanded Microgrid and its Impact on Voltage and Current Harmonics. In: 2021 IEEE Madrid PowerTech, 2021, S. 1–6 Moradifar, A. ; Akbari Foroud, A. ; Gorgani Firouzjah, K.: Comprehensive identification of multiple harmonic sources using fuzzy logic and adjusted probabilistic neural network. In: Neural Computing and Applications (2017), S. 1–14. http://dx.doi.org/10.1007/s00521-017-3022-8. – DOI 10.1007/s00521–017–3022–8 Meyer, J. ; Bollen, M. ; Amaris, H. ; Blanco, A. M. ; Castro, A. G. ; Desmet, J. ; Klatt, M. ; Kocewiak, L. ; Ronnberg, S. ; Yang, K.: Future work on harmonics - some expert opinions Part II - supraharmonics, standards and measurements. In: 2014 16th International Conference on Harmonics and Quality of Power (ICHQP), 2014. – ISSN 2164–0610, S. 909–913 Mansoor, A. ; Grady, W. M. ; Chowdhury, A. H. ; Samotyi, M. J.: An investigation of harmonics attenuation and diversity among distributed singlephase power electronic loads. In: IEEE Transactions on Power Delivery 10 (1995), Jan, Nr. 1, S. 467–473. http://dx.doi.org/10.1109/61.368365. – DOI 10.1109/61.368365. – ISSN 0885–8977 Mehran Mesbahi, Magnus E.: Graph Theoretic Methods in Multiagent Networks. Princeton University Press, 2010. – ISBN 9781400835355 Muscas, C. ; Peretto, L. ; Sulis, S. ; Tinarelli, R.: Effects of load unbalance on multipoint measurement techniques for assessing the responsibility for PQ degradation. In: 2004 11th International Conference on Harmonics and Quality of Power, 2004, S. 759–764 Meyer, J. ; Stiegler, R. ; Schegner, P. ; R¨oder, I. ; Belger, A.: Harmonic resonances in residential low-voltage networks caused by consumer electronics. In: CIRED - Open Access Proceedings Journal 2017 (2017), Nr. 1, S. 672–676. http://dx.doi.org/10.1049/oap-cired.2017.0460. – DOI 10.1049/oap–cired.2017.0460. – ISSN 2515–0855 Newman, Mark: Networks. Oxford University Press, 2018. http://dx.doi. org/10.1093/oso/9780198805090.001.0001. http://dx.doi.org/10.1093/ oso/9780198805090.001.0001. – ISBN 9780198805090 Nunes, I. ; Oliveira, J. C.: A proposal of methodology for the assignment of responsibilities on harmonic distortions using the superposition principle. In: IEEE Latin America Transactions 12 (2014), Dec, Nr. 8, S. 1426–1431. http:// dx.doi.org/10.1109/TLA.2014.7014510. – DOI 10.1109/TLA.2014.7014510. – ISSN 1548–0992 Pavas, A.: Study of Responsibilities Assignment Methods in Power Quality (Summa Cum Laude), Universidad Nacional de Colombia, Facultad de Ingenier ´ıa, Diss., 2012 Pfajfar, T. ; Blazic, B. ; Papic, I.: Harmonic Contributions Evaluation With the Harmonic Current Vector Method. In: IEEE Transactions on Power Delivery 23 (2008), Jan, Nr. 1, S. 425–433. http://dx.doi.org/10.1109/ TPWRD.2007.911165. – DOI 10.1109/TPWRD.2007.911165. – ISSN 0885–8977 Pearl, Judea: Causal Diagrams for Empirical Research. In: Biometrika 82 (1995), Nr. 4, 669–688. http://dx.doi.org/10.2307/2337329. – DOI 10.2307/2337329. – ISSN 00063444 Pavas, A. ; Garzon, C.: Causality assessment for power quality stationary disturbances. In: IEEE PES Innovative Smart Grid Technologies, Europe, 2014. – ISSN 2165–4816, S. 1–7 Pfajfar, T. ; Papic, I.: Harmonic emission level estimation based on measurements at the point of evaluation. In: 2011 IEEE Power and Energy Society General Meeting, 2011. – ISSN 1932–5517, S. 1–5 Pfajfar, T. ; Papic, I.: Harmonic emission level estimation based on measurements at the point of evaluation. In: 2011 IEEE Power and Energy Society General Meeting, 2011. – ISSN 1932–5517, S. 1–5 Penfield, P. ; Spence, R. ; Duinker, S.: A generalized form of Tellegen’s theorem. In: IEEE Transactions on Circuit Theory 17 (1970), Nr. 3, S. 302–305. http://dx.doi.org/10.1109/TCT.1970.1083145. – DOI 10.1109/TCT.1970.1083145 P. Tenti, P. M. ; Paredes, H. K. M.: Conservative Power Theory, sequence components and accountability in smart grids. In: 2010 International School on Nonsinusoidal Currents and Compensation, Lagow, Poland, 2010, S. 37–45 Pavas, A. ; Torres-S´anchez, H. ; Staudt, V.: Method of Disturbances Interaction: Novel approach to assess responsibilities for steady state power quality disturbances among customers. In: Proceedings of 14th International Conference on Harmonics and Quality of Power - ICHQP 2010, 2010. – ISSN 1540–6008, S. 1–9 Pavas, Andr´es ; Torres-S´anchez, Horacio ; Staudt, Volker: Method of Disturbances Interaction: Novel approach to assess responsibilities for steady state power quality disturbances among customers. In: Proceedings of 14th International Conference on Harmonics and Quality of Power - ICHQP 2010, 2010, S. 1–9 Pavas, A. ; Torres-Sanchez, H. ; Staudt, V.: Statistical analysis of power quality disturbances propagation by means of the Method of Disturbances Interaction. In: 2012 3rd IEEE PES Innovative Smart Grid Technologies Europe (ISGT Europe), 2012. – ISSN 2165–4816, S. 1–9 Pavas, Andr´es ; Torres-S¡nchez, Horacio ; Staudt, Volker: Statistical analysis of power quality disturbances propagation by means of the Method of Disturbances Interaction. In: 2012 3rd IEEE PES Innovative Smart Grid Technologies Europe (ISGT Europe), 2012, S. 1–9 Spelko, A. ; Blazic, B. ; Papic, I. ; Pourarab, M. ; Meyer, J. ; Xu, X. ; Djokic, S. Z.: CIGRE/CIRED JWG C4.42: Overview of common methods for assessment of harmonic contribution from customer installation. In: 2017 IEEE Manchester PowerTech, 2017, S. 1–6 Spelko, A. ; Blazic, B. ; Papic, I. ; Pourarab, M. ; Meyer, J. ; Xu, X. ; Djokic, S. Z.: CIGRE/CIRED JWG C4.42: Overview of common methods for assessment of harmonic contribution from customer installation. In: 2017 IEEE Manchester PowerTech, 2017, S. 1–6 Santos, I.N. ; Oliveira, J.C. ; Paula Silva, S.F.: Critical evaluation of the performance of the method of harmonic power flow to determine the dominant source of distortion. In: IEEE Latin America Transactions 9 (2011), Nr. 5, S. 740–746. http://dx.doi.org/10.1109/TLA.2011.6030984. – DOI 10.1109/TLA.2011.6030984 Staudt, V.: Fryze - Buchholz - Depenbrock: A time-domain power theory. In: 2008 International School on Nonsinusoidal Currents and Compensation, 2008. – ISSN 2375–1428, S. 1–12 Tenti, Paolo: A Time-Domain Approach to Power Term Definitions under Non-Sinusoidal Conditions, 2004 Wiener, N.: The theory of prediction. In: Modern mathematics for engineers 1 (1956), S. 125–139. – ISSN 0486497461, 9780486497464 Wanik, M. Z. C. ; Yusuf, Y. ; Al-Yousif, S. N. ; Umeh, K. C. ; Mohamed, A.: Simulation of harmonic resonance phenomena in industrial distribution system. In: 2004 IEEE Region 10 Conference TENCON 2004. Bd. C, 2004, S. 240–243 Vol. 3 Xu, Wilsun ; Liu, Yilu: A method for determining customer and utility harmonic contributions at the point of common coupling. In: IEEE Transactions on Power Delivery 15 (2000), Nr. 2, S. 804–811. http://dx.doi.org/10.1109/ 61.853023. – DOI 10.1109/61.853023 Xu, Wilsun ; Liu, Xian ; Liu, Yilu: An investigation on the validity of powerdirection method for harmonic source determination. In: IEEE Transactions on Power Delivery 18 (2003), Jan, Nr. 1, S. 214–219. http://dx.doi.org/ 10.1109/TPWRD.2002.803842. – DOI 10.1109/TPWRD.2002.803842. – ISSN 0885–8977 Xu, Wilsun ; Li, Chun ; Tayjasanant, T.: A ¸critical impedance”based method for identifying harmonic sources. In: IEEE Power Engineering Society General Meeting, 2004., 2004, S. 917 Vol.1– Yanchenko, Sergey ; Meyer, Jan: Harmonic emission of household devices in presence of typical voltage distortions. (2015), S. 1–6. http://dx.doi.org/ 10.1109/PTC.2015.7232518. – DOI 10.1109/PTC.2015.7232518 |
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Reconocimiento 4.0 Internacional |
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Reconocimiento 4.0 Internacionalhttp://creativecommons.org/licenses/by/4.0/info:eu-repo/semantics/openAccesshttp://purl.org/coar/access_right/c_abf2Pavas Martínez, Fabio Andrés0bf46d804d7c4a825838043e9300a6ac600Blanco Castañeda, Ana Maríaafbe82ad154a4a89be6faa9662085c0b600Garzón, Camilo Andrés046d2ba3d9e76f74b64bf5fdd75a0b25Programa de Investigacion sobre Adquisicion y Analisis de Señales Paas-UnInstitute of Electric Power Systems and High Voltage Engineering (IEEH) of the TUD Dresden University of TechnologyGarzón, Camilo Andrés [000000021658179X]Garzón, Camilo Andrés [56719488200]2024-07-02T15:19:37Z2024-07-02T15:19:37Z2023-09https://repositorio.unal.edu.co/handle/unal/86338Universidad Nacional de ColombiaRepositorio Institucional Universidad Nacional de Colombiahttps://repositorio.unal.edu.co/ilustraciones (principalmente a color), diagramasEl origen de las perturbaciones estacionarias es un problema que ha sido abordado desde múltiples perspectivas. Se han desarrollado varios métodos para determinar fuentes de perturbación, dispositivos que inyectan armónicos, la contribución de los elementos al desarrollo de una perturbación, asignación de responsabilidades y una larga lista de términos utilizados para referirse a lo mismo, el problema de Causalidad. Este problema en el contexto de calidad de potencia parte de la propia definición de causa y, con ella, la clarificación de otros términos como Fuente y Responsabilidad. Una vez claros los conceptos elementales, la identificación y desarrollo de técnicas matemáticas que permitan su análisis es una tarea que involucra múltiples esfuerzos encaminados no sólo al desarrollo matemático, sino también, a la identificación y construcción de escenarios que permitan contrastar cada propuesta teórica. Este trabajo aborda el problema de la Causalidad en calidad de potencia desde diferentes disciplinas matemáticas. Además, cada propuesta es evaluada a través de casos de estudio, algunos implementados en el laboratorio y otros medidos directamente en sistemas reales. Finalmente, todos los elementos matemáticos explorados se complementan, determinando así la Causa de la distorsión de forma de onda en sistemas eléctricos de baja tensión (Texto tomado de la fuente).The origin of stationary disturbances is a problem that has been addressed from multiple perspectives. Several methods have been developed to determine sources of disturbance, devices that inject harmonics, the contribution of elements to the development of a disturbance, responsibilities assignment, and a long list of terms used to refer to the same thing, the problem of Causality. This problem in the context of power quality starts from the very definition of Cause and, with it, the clarification of other terms such as Source and Responsibility. Once the elementary concepts are clear, the identification and development of mathematical techniques that allow their analysis is a task that involves multiple efforts aimed not only at mathematical development but also at the identification and construction of scenarios that will enable testing each theoretical proposal. This work addresses the problem of Causality in power quality from different mathematical disciplines. In addition, each proposal is evaluated through study cases, some laboratory implementations, and others measured in real systems. Finally, all the mathematical elements explored are complementary, thus determining the Cause of the waveform distortion in low voltage electrical systems (Texto tomado de la fuente).DoctoradoDoctor en IngenieríaCalidad de PotenciaIngeniería Eléctrica y Electrónica.Sede Bogotá100 páginasapplication/pdfengUniversidad Nacional de ColombiaBogotá - Ingeniería - Doctorado en Ingeniería - Ingeniería EléctricaFacultad de IngenieríaBogotá, ColombiaUniversidad Nacional de Colombia - Sede Bogotá620 - Ingeniería y operaciones afines::629 - Otras ramas de la ingenieríaEqualizers (Electronics)Causalidad (Física)Redes eléctricasEcualizadores (Electrónica)Síntesis de redes electrónicasArmónicos (Ondas eléctricas)Perturbación (Matemáticas)Causality (Physics)Electric networksElectric networks synthesisHarmonics (Electric waves)Perturbation (mathematics)CausalidadSistemas de distribuciónDistorsión armónicaFuente armónicaPerturbaciones estacionarias de calidad de potenciaProblema de asignación de responsabilidadesCausalityDistribution systemHarmonic distortionHarmonic sourcePower ouality stationary disturbancesResponsibility assignment problemLocation of power quality stationary disturbances sources in distribution power gridsLocation of Power Quality Stationary Disturbances Sources in Distribution Power GridsLocalización de perturbaciones estacionarias de calidad de potencia en Redes de distribuciónTrabajo de grado - Doctoradoinfo:eu-repo/semantics/doctoralThesisinfo:eu-repo/semantics/publishedVersionhttp://purl.org/coar/resource_type/c_db06http://purl.org/coar/version/c_970fb48d4fbd8a85Texthttp://purl.org/redcol/resource_type/TDA. E. Emanuel, R. L. ; Testa, A.: Power definitions for circuits with nonlinear and unbalanced loads — The IEEE standard 1459-2010. In: 2012 IEEE Power and Energy Society General Meeting, San Diego, CA, 2012, S. 1–6Agudelo-Mart´ınez, D. ; Garz´on, C. ; Pavas, A.: Interaction of power quality disturbances within 2–150 kHz (supraharmonics): Analytical framework. In: 2018 18th International Conference on Harmonics and Quality of Power (ICHQP), 2018. – ISSN 2164–0610, S. 1–7Aziz, T. ; Nandi, S. K. ; Rahman, M. S. ; Riadh, R. R.: Study of power quality with changing customer loads in an urban distribution network. In: 2015 3rd International Conference on Green Energy and Technology (ICGET), 2015, S. 1–6AY, NIHAT ; POLANI, DANIEL: INFORMATION FLOWS IN CAUSAL NETWORKS. In: Advances in Complex Systems 11 (2008), Nr. 01, 17-41. http://dx.doi.org/10.1142/S0219525908001465. – DOI 10.1142/S0219525908001465Basmann, R. L.: A Note on the Statistical Testability of ’Explicit Causal Chains’ Against the Class of ’Interdependent’ Models. In: Journal of the American Statistical Association 60 (1965), Nr. 312, 1080–1093. http: //dx.doi.org/10.2307/2283407. – DOI 10.2307/2283407. – ISSN 01621459Blanco, A. M.: Stochastic harmonic emission model of aggregate residential customers, Technische Universit¨at Dresden, Diss., 2018Kapitel 1. In: Bollen, Math H.: Overview of Power Quality and Power Quality Standards. Wiley-IEEE Press, 2000. – ISBN 9780470546840, S. 1–34Bonacich, Phillip: Some unique properties of eigenvector centrality. In: Social Networks 29 (2007), Nr. 4, 555-564. http://dx.doi.org/10.1016/j.socnet. 2007.04.002. – DOI 10.1016/j.socnet.2007.04.002. – ISSN 0378–8733Buchhokz, F.: Understanding the Correct Power Concept of Active and Reactive Power. In: Selbsverlag, Munchen, 1950Cristaldi, L. ; Ferrero, A.: Harmonic power flow analysis for the measurement of the electric power quality. In: IEEE Transactions on Instrumentation and Measurement 44 (1995), Nr. 3, S. 683–685. http://dx.doi.org/10.1109/ 19.387308. – DOI 10.1109/19.387308Chidurala, A. ; Saha, T. K. ; Mithulananthan, N.: Harmonic impact of high penetration photovoltaic system on unbalanced distribution networks - Learning from an urban photovoltaic network. In: IET Renewable Power Generation 10 (2017), Nr. 4, S. 485–494. http://dx.doi.org/10.1049/iet-rpg. 2015.0188. – DOI 10.1049/iet–rpg.2015.0188Czarnecki, L. S.: What is wrong with the Budeanu concept of reactive and distortion power and why it should be abandoned. In: IEEE Transactions on Instrumentation and Measurement, 1987, S. 834–837Czarnecki, L. S.: Orthogonal decomposition of the currents in a 3-phase nonlinear asymmetrical circuit with a nonsinusoidal voltage source. In: IEEE Transactions on Instrumentation and Measurement, 1988, S. 30–34Czarnecki, L. S.: Currents’ Physical Components (CPC) concept: A fundamental of power theory. In: 2008 International School on Nonsinusoidal Currents and Compensation, Lagow, Poland, 2008, S. 1–11Depenbrock, M.: The FBD-method, a generally applicable tool for analyzing power relations. In: IEEE Transactions on Power Systems 8 (1993), Nr. 2, S. 381–387. http://dx.doi.org/10.1109/59.260849. – DOI 10.1109/59.260849Davis, E. J. ; Emanuel, A. E. ; Pileggi, D. J.: Evaluation of singlepoint measurements method for harmonic pollution cost allocation. In: IEEE Transactions on Power Delivery 15 (2000), Jan, Nr. 1, S. 14–18. http: //dx.doi.org/10.1109/61.847222. – DOI 10.1109/61.847222. – ISSN 0885– 8977Dugan, Roger C.: Electrical power systems quality. Nueva York McGraw-Hill, 2003. – ISBN:9780071761550Emanuel, A. E. ; Orr, J. A.: Fryze’s power definition: Some limitations. In: 2012 IEEE 15th International Conference on Harmonics and Quality of Power, 2012. – ISSN 2164–0610, S. 518–522Fryze, S.: Effective Reactive and Apparent Powers in Circuits with Nonsinusoidal Waveforms. In: Electrotehn Zeitshrift Bd. 53, 1932, S. 596–99, 625–27, 700–02Garzón, C.: Evaluación de Causalidad para Perturbaciones Estacionarias de Calidad de Energía, Universidad Nacional de Colombia, Facultad de Ingeniería, Diplomarbeit, 2016Garz´on, Camilo A. ; Kannan, Shrinath ; Blanco, Ana M. ; Romero, Miguel ; Meyer, Jan ; Pavas, Andr´es: Power Quality Issues in AC Islanded Microgrids: Mitigation and Commonly Used Control Strategies. In: Simposio Internacional sobre la Calidad de la Energ´ıa El´ectrica - SICEL 10 (2021), mar. https://revistas.unal.edu.co/index.php/SICEL/article/view/97132Garz´on, Camilo ; Pavas, Andr´es: Potential Use of Fryze’s Approach-Based Power Theories in Waveform Distortion Contribution Assessment. In: Revista UIS Ingenier´ıas.Garz´on, C. ; Pavas, A.: Causality assessment for power quality stationary disturbances by means of centrality index. In: 2015 IEEE Workshop on Power Electronics and Power Quality Applications (PEPQA), 2015, S. 1–5Garz´on, C. ; Pavas, A.: Laplacian eigenvector centrality as tool for assessing causality in power quality. In: 2017 IEEE Manchester PowerTech, 2017, S. 1–6Garz´on, Camilo ; Pavas, Andr´es: Review of Responsibilities Assignment Methods for Harmonic Emission. In: 2019 IEEE Milan PowerTech, 2019, S. 1–6Garz´on, Camilo A. ; Pavas, Andres ; Kannan, Shrinath ; Blanco, Ana M. ; Romero, Miguel ; Quintero, Vanessa ; Meyer, Jan: Assignment of Responsibilities for Power Quality Stationary Disturbances in an Islanded Microgrids. In: Simposio Internacional sobre la Calidad de la Energ´ıa El´ectrica - SICEL 10 (2023), mar. https://revistas.unal.edu.co/index.php/SICEL/article/ view/97104Granger, C. W. J.: Investigating Causal Relations by Econometric Models and Cross-spectral Methods. In: Econometrica 37 (1969), Nr. 3, 424–438. http: //www.jstor.org/stable/1912791. – ISSN 00129682, 14680262Grossman, S.I.: Álgebra Lineal. McGraw-Hill Interamericana de España S.L., 2008 (Elibro Catedra). – ISBN 9789701065174Hamouda, S. H. ; Aleem, S. H. E. A. ; Ibrahim, A. M.: Harmonic resonance index and resonance severity estimation for shunt capacitor applications in industrial power systems. In: 2017 Nineteenth International Middle East Power Systems Conference (MEPCON), 2017, S. 527–532Kapitel 11. In: Hamilton, James D.: Vector Autoregressions. Princeton University Press, 1994. – ISBN 0–691–04289–6, S. 302–307Hansen, S. ; Nielsen, P. ; Blaabjerg, F.: Harmonic cancellation by mixing nonlinear single-phase and three-phase loads. In: IEEE Transactions on Industry Applications 36 (2000), Jan, Nr. 1, S. 152–159. http://dx.doi.org/ 10.1109/28.821810. – DOI 10.1109/28.821810. – ISSN 0093–9994Heydt, G. T. ; Patil, H. U. ; Loehr, J. ; LaRose, T.: Harmonic resonance assessment for transmission class shunt capacitors. In: 2016 IEEE/PES Transmission and Distribution Conference and Exposition (T D), 2016. – ISSN 2160–8563, S. 1–5ICONTEC: CALIDAD DE LA POTENCIA ELÉCTRICA. LIMITES Y METODOLOGÍA DE EVALUACIÓN EN PUNTO DE CONEXIÓN COMÚN. In: ICONTEC NTC 5001 (2008), May, S. 1–51ICONTEC: CALIDAD DE LA POTENCIA ELÉCTRICA (CPE). DEFINICIONES Y TÉRMINOS FUNDAMENTALES. In: ICONTEC NTC 5000 (2013), June, S. 1–20ICONTEC: COMPATIBILIDAD ELECTROMAGNÉTICA (CEM). PARTE 1. GENERALIDADES. SECCIÓN 1: APLICACIÓN E INTERPRETACIÓN DE DEFINICIONES Y TÉRMINOS FUNDAMENTALES. In: ICONTEC NTC-IEC 61000-1-1 (2000), December, S. 1–29IEC: Part 4-13: Testing and measurement techniques - Harmonics and interharmonics including mains signalling at a.c. power port, low frequency immunity tests. In: Electromagnetic compatibility (EMC) - IEC Std. 61000-4-13 (2002), June, S. 1–55IEC: Part 2-12: Environment - Compatibility levels for low-frequency conducted disturbances and signalling in public medium-voltage power supply systems. In: Electromagnetic compatibility (EMC) - IEC Std. 61000-2-12 (2003), June, S. 1–55IEC: Pat 2-2: Environment - Compatibility levels for low-frequency conducted disturbances and signaling in public low-voltage power supply systems. In: Electromagnetic compatibility (EMC) - IEC Std. 61000-2-2 (2003), June, S. 1–29Testing and measurement techniques – Power quality measurement methods. : Testing and measurement techniques – Power quality measurement methods, 2008. – 1–292 S.IEC: Part 3-6: Limits - Assessment of emission limits for the connection of distorting installations to MV, HV and EHV power systems. In: Electromagnetic compatibility (EMC) - IEC TR Std. 61000-3-6 (2008), June, S. 1–29General guide on harmonics, interharmonics measurements and instrumentation, for power supply systems and equipment connected thereto. : General guide on harmonics, interharmonics measurements and instrumentation, for power supply systems and equipment connected thereto, 2009. – 1–41 S.Part 4-7: General guide on harmonics, interharmonics measurements and instrumentation, for power supply systems and equipment connected thereto. In: Electromagnetic compatibility (EMC) - IEC Std. 61000-4-7 (2009), June, S. 1–29IEC: Part 3-12: Limits - Limits for harmonic currents produced by equipment connected to public low-voltage systems with input current >16 A and ≤75 A per phase. In: Electromagnetic compatibility (EMC) - IEC Std. 61000-3-12 (2011), June, S. 1–29IEC: Part 3-2: Limits - Limits for harmonic current emissions (equipment input current 16 A per phase). In: Electromagnetic compatibility (EMC) - IEC Std. 61000-3-2 (2014), June, S. 1–29IEC: Part 4-30: Testing and measurement techniques – Power quality measurement methods. In: Electromagnetic compatibility (EMC) - IEC Std. 61000-4-30 (2015), June, S. 1–29IEEE: IEEE Recommended Practice for Monitoring Electric Power Quality. In: IEEE Std 1159-2009 (Revision of IEEE Std 1159-1995) (2009), June, S. c1–81. http://dx.doi.org/10.1109/IEEESTD.2009.5154067. – DOI 10.1109/IEEESTD.2009.5154067IEEE: IEEE Standard Definitions for the Measurement of Electric Power Quantities Under Sinusoidal, Nonsinusoidal, Balanced, or Unbalanced Conditions. In: IEEE Std 1459-2010 (Revision of IEEE Std 1459-2000) (2010), March, S. 1–50. http://dx.doi.org/10.1109/IEEESTD.2010.5439063. – DOI 10.1109/IEEESTD.2010.5439063IEEE: IEEE Standard Definitions for the Measurement of Electric Power Quantities Under Sinusoidal, Nonsinusoidal, Balanced, or Unbalanced Conditions. In: IEEE Std 1459-2010 (Revision of IEEE Std 1459-2000) (2010), March, S. 1–50. http://dx.doi.org/10.1109/IEEESTD.2010.5439063. – DOI 10.1109/IEEESTD.2010.5439063IEEE: IEEE Recommended Practice and Requirements for Harmonic Control in Electric Power Systems. In: IEEE Std 519-2014 (Revision of IEEE Std 519-1992) (2014), June, S. 1–29. http://dx.doi.org/10.1109/IEEESTD.2014. 6826459. – DOI 10.1109/IEEESTD.2014.6826459Kannan, Shrinath ; Blanco, Ana M. ; Garz´on, Camilo ; Pavas, Andr´es ; Meyer, Jan: Harmonic Impedance Characteristics in an Islanded Microgrid and its Impact on Voltage and Current Harmonics. In: 2021 IEEE Madrid PowerTech, 2021, S. 1–6Moradifar, A. ; Akbari Foroud, A. ; Gorgani Firouzjah, K.: Comprehensive identification of multiple harmonic sources using fuzzy logic and adjusted probabilistic neural network. In: Neural Computing and Applications (2017), S. 1–14. http://dx.doi.org/10.1007/s00521-017-3022-8. – DOI 10.1007/s00521–017–3022–8Meyer, J. ; Bollen, M. ; Amaris, H. ; Blanco, A. M. ; Castro, A. G. ; Desmet, J. ; Klatt, M. ; Kocewiak, L. ; Ronnberg, S. ; Yang, K.: Future work on harmonics - some expert opinions Part II - supraharmonics, standards and measurements. In: 2014 16th International Conference on Harmonics and Quality of Power (ICHQP), 2014. – ISSN 2164–0610, S. 909–913Mansoor, A. ; Grady, W. M. ; Chowdhury, A. H. ; Samotyi, M. J.: An investigation of harmonics attenuation and diversity among distributed singlephase power electronic loads. In: IEEE Transactions on Power Delivery 10 (1995), Jan, Nr. 1, S. 467–473. http://dx.doi.org/10.1109/61.368365. – DOI 10.1109/61.368365. – ISSN 0885–8977Mehran Mesbahi, Magnus E.: Graph Theoretic Methods in Multiagent Networks. Princeton University Press, 2010. – ISBN 9781400835355Muscas, C. ; Peretto, L. ; Sulis, S. ; Tinarelli, R.: Effects of load unbalance on multipoint measurement techniques for assessing the responsibility for PQ degradation. In: 2004 11th International Conference on Harmonics and Quality of Power, 2004, S. 759–764Meyer, J. ; Stiegler, R. ; Schegner, P. ; R¨oder, I. ; Belger, A.: Harmonic resonances in residential low-voltage networks caused by consumer electronics. In: CIRED - Open Access Proceedings Journal 2017 (2017), Nr. 1, S. 672–676. http://dx.doi.org/10.1049/oap-cired.2017.0460. – DOI 10.1049/oap–cired.2017.0460. – ISSN 2515–0855Newman, Mark: Networks. Oxford University Press, 2018. http://dx.doi. org/10.1093/oso/9780198805090.001.0001. http://dx.doi.org/10.1093/ oso/9780198805090.001.0001. – ISBN 9780198805090Nunes, I. ; Oliveira, J. C.: A proposal of methodology for the assignment of responsibilities on harmonic distortions using the superposition principle. In: IEEE Latin America Transactions 12 (2014), Dec, Nr. 8, S. 1426–1431. http:// dx.doi.org/10.1109/TLA.2014.7014510. – DOI 10.1109/TLA.2014.7014510. – ISSN 1548–0992Pavas, A.: Study of Responsibilities Assignment Methods in Power Quality (Summa Cum Laude), Universidad Nacional de Colombia, Facultad de Ingenier ´ıa, Diss., 2012Pfajfar, T. ; Blazic, B. ; Papic, I.: Harmonic Contributions Evaluation With the Harmonic Current Vector Method. In: IEEE Transactions on Power Delivery 23 (2008), Jan, Nr. 1, S. 425–433. http://dx.doi.org/10.1109/ TPWRD.2007.911165. – DOI 10.1109/TPWRD.2007.911165. – ISSN 0885–8977Pearl, Judea: Causal Diagrams for Empirical Research. In: Biometrika 82 (1995), Nr. 4, 669–688. http://dx.doi.org/10.2307/2337329. – DOI 10.2307/2337329. – ISSN 00063444Pavas, A. ; Garzon, C.: Causality assessment for power quality stationary disturbances. In: IEEE PES Innovative Smart Grid Technologies, Europe, 2014. – ISSN 2165–4816, S. 1–7Pfajfar, T. ; Papic, I.: Harmonic emission level estimation based on measurements at the point of evaluation. In: 2011 IEEE Power and Energy Society General Meeting, 2011. – ISSN 1932–5517, S. 1–5Pfajfar, T. ; Papic, I.: Harmonic emission level estimation based on measurements at the point of evaluation. In: 2011 IEEE Power and Energy Society General Meeting, 2011. – ISSN 1932–5517, S. 1–5Penfield, P. ; Spence, R. ; Duinker, S.: A generalized form of Tellegen’s theorem. In: IEEE Transactions on Circuit Theory 17 (1970), Nr. 3, S. 302–305. http://dx.doi.org/10.1109/TCT.1970.1083145. – DOI 10.1109/TCT.1970.1083145P. Tenti, P. M. ; Paredes, H. K. M.: Conservative Power Theory, sequence components and accountability in smart grids. In: 2010 International School on Nonsinusoidal Currents and Compensation, Lagow, Poland, 2010, S. 37–45Pavas, A. ; Torres-S´anchez, H. ; Staudt, V.: Method of Disturbances Interaction: Novel approach to assess responsibilities for steady state power quality disturbances among customers. In: Proceedings of 14th International Conference on Harmonics and Quality of Power - ICHQP 2010, 2010. – ISSN 1540–6008, S. 1–9Pavas, Andr´es ; Torres-S´anchez, Horacio ; Staudt, Volker: Method of Disturbances Interaction: Novel approach to assess responsibilities for steady state power quality disturbances among customers. In: Proceedings of 14th International Conference on Harmonics and Quality of Power - ICHQP 2010, 2010, S. 1–9Pavas, A. ; Torres-Sanchez, H. ; Staudt, V.: Statistical analysis of power quality disturbances propagation by means of the Method of Disturbances Interaction. In: 2012 3rd IEEE PES Innovative Smart Grid Technologies Europe (ISGT Europe), 2012. – ISSN 2165–4816, S. 1–9Pavas, Andr´es ; Torres-S¡nchez, Horacio ; Staudt, Volker: Statistical analysis of power quality disturbances propagation by means of the Method of Disturbances Interaction. In: 2012 3rd IEEE PES Innovative Smart Grid Technologies Europe (ISGT Europe), 2012, S. 1–9Spelko, A. ; Blazic, B. ; Papic, I. ; Pourarab, M. ; Meyer, J. ; Xu, X. ; Djokic, S. Z.: CIGRE/CIRED JWG C4.42: Overview of common methods for assessment of harmonic contribution from customer installation. In: 2017 IEEE Manchester PowerTech, 2017, S. 1–6Spelko, A. ; Blazic, B. ; Papic, I. ; Pourarab, M. ; Meyer, J. ; Xu, X. ; Djokic, S. Z.: CIGRE/CIRED JWG C4.42: Overview of common methods for assessment of harmonic contribution from customer installation. In: 2017 IEEE Manchester PowerTech, 2017, S. 1–6Santos, I.N. ; Oliveira, J.C. ; Paula Silva, S.F.: Critical evaluation of the performance of the method of harmonic power flow to determine the dominant source of distortion. In: IEEE Latin America Transactions 9 (2011), Nr. 5, S. 740–746. http://dx.doi.org/10.1109/TLA.2011.6030984. – DOI 10.1109/TLA.2011.6030984Staudt, V.: Fryze - Buchholz - Depenbrock: A time-domain power theory. In: 2008 International School on Nonsinusoidal Currents and Compensation, 2008. – ISSN 2375–1428, S. 1–12Tenti, Paolo: A Time-Domain Approach to Power Term Definitions under Non-Sinusoidal Conditions, 2004Wiener, N.: The theory of prediction. In: Modern mathematics for engineers 1 (1956), S. 125–139. – ISSN 0486497461, 9780486497464Wanik, M. Z. C. ; Yusuf, Y. ; Al-Yousif, S. N. ; Umeh, K. C. ; Mohamed, A.: Simulation of harmonic resonance phenomena in industrial distribution system. In: 2004 IEEE Region 10 Conference TENCON 2004. Bd. C, 2004, S. 240–243 Vol. 3Xu, Wilsun ; Liu, Yilu: A method for determining customer and utility harmonic contributions at the point of common coupling. In: IEEE Transactions on Power Delivery 15 (2000), Nr. 2, S. 804–811. http://dx.doi.org/10.1109/ 61.853023. – DOI 10.1109/61.853023Xu, Wilsun ; Liu, Xian ; Liu, Yilu: An investigation on the validity of powerdirection method for harmonic source determination. In: IEEE Transactions on Power Delivery 18 (2003), Jan, Nr. 1, S. 214–219. http://dx.doi.org/ 10.1109/TPWRD.2002.803842. – DOI 10.1109/TPWRD.2002.803842. – ISSN 0885–8977Xu, Wilsun ; Li, Chun ; Tayjasanant, T.: A ¸critical impedance”based method for identifying harmonic sources. In: IEEE Power Engineering Society General Meeting, 2004., 2004, S. 917 Vol.1–Yanchenko, Sergey ; Meyer, Jan: Harmonic emission of household devices in presence of typical voltage distortions. (2015), S. 1–6. http://dx.doi.org/ 10.1109/PTC.2015.7232518. – DOI 10.1109/PTC.2015.7232518BibliotecariosEstudiantesInvestigadoresProveedores de ayuda financiera para estudiantesReceptores de fondos federales y solicitantesLICENSElicense.txtlicense.txttext/plain; charset=utf-85879https://repositorio.unal.edu.co/bitstream/unal/86338/1/license.txteb34b1cf90b7e1103fc9dfd26be24b4aMD51ORIGINALPhD_Location PQSD_CG.pdfPhD_Location PQSD_CG.pdfTesis de Doctorado en Ingeniería Eléctrica - Location of power quality stationary disturbancesapplication/pdf3130762https://repositorio.unal.edu.co/bitstream/unal/86338/2/PhD_Location%20PQSD_CG.pdfa655d87e0dade126afb26ac2eae97eddMD52THUMBNAILPhD_Location PQSD_CG.pdf.jpgPhD_Location PQSD_CG.pdf.jpgGenerated Thumbnailimage/jpeg4071https://repositorio.unal.edu.co/bitstream/unal/86338/3/PhD_Location%20PQSD_CG.pdf.jpga58d9671d2e34cd54fbdf0f891e709eeMD53unal/86338oai:repositorio.unal.edu.co:unal/863382024-07-02 23:04:49.763Repositorio Institucional Universidad 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