PI-PBC Approach for Voltage Regulation in Cuk Converters with Adaptive Load Estimation

This paper proposes a proportional-integral passivity-based controller (PI-PBC) for supporting voltage in linear loads integrated with Ćuk converters. An adaptive load estimator is also employed to avoid current measurements at the load point. This estimator permits an on-line estimation of the load...

Full description

Autores:
Montoya, Oscar
Gil-González, Walter
Garcés, Alejandro
Sierra, Federico
Hernandez, J.C.
Tipo de recurso:
Fecha de publicación:
2020
Institución:
Universidad Tecnológica de Bolívar
Repositorio:
Repositorio Institucional UTB
Idioma:
eng
OAI Identifier:
oai:repositorio.utb.edu.co:20.500.12585/10005
Acceso en línea:
https://hdl.handle.net/20.500.12585/10005
https://ieeexplore.ieee.org/document/9258716
Palabra clave:
Ćuk converter
Load estimator
Passivity-based control
Voltage regulation
Port-Hamiltonian model
Stability analysis
LEMB
Rights
closedAccess
License
http://purl.org/coar/access_right/c_14cb
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dc.title.spa.fl_str_mv PI-PBC Approach for Voltage Regulation in Cuk Converters with Adaptive Load Estimation
title PI-PBC Approach for Voltage Regulation in Cuk Converters with Adaptive Load Estimation
spellingShingle PI-PBC Approach for Voltage Regulation in Cuk Converters with Adaptive Load Estimation
Ćuk converter
Load estimator
Passivity-based control
Voltage regulation
Port-Hamiltonian model
Stability analysis
LEMB
title_short PI-PBC Approach for Voltage Regulation in Cuk Converters with Adaptive Load Estimation
title_full PI-PBC Approach for Voltage Regulation in Cuk Converters with Adaptive Load Estimation
title_fullStr PI-PBC Approach for Voltage Regulation in Cuk Converters with Adaptive Load Estimation
title_full_unstemmed PI-PBC Approach for Voltage Regulation in Cuk Converters with Adaptive Load Estimation
title_sort PI-PBC Approach for Voltage Regulation in Cuk Converters with Adaptive Load Estimation
dc.creator.fl_str_mv Montoya, Oscar
Gil-González, Walter
Garcés, Alejandro
Sierra, Federico
Hernandez, J.C.
dc.contributor.author.none.fl_str_mv Montoya, Oscar
Gil-González, Walter
Garcés, Alejandro
Sierra, Federico
Hernandez, J.C.
dc.subject.keywords.spa.fl_str_mv Ćuk converter
Load estimator
Passivity-based control
Voltage regulation
Port-Hamiltonian model
Stability analysis
topic Ćuk converter
Load estimator
Passivity-based control
Voltage regulation
Port-Hamiltonian model
Stability analysis
LEMB
dc.subject.armarc.none.fl_str_mv LEMB
description This paper proposes a proportional-integral passivity-based controller (PI-PBC) for supporting voltage in linear loads integrated with Ćuk converters. An adaptive load estimator is also employed to avoid current measurements at the load point. This estimator permits an on-line estimation of the load conductance for maintaining the output voltage as constant as possible independent of its variations. The proposed PI-PBC allows guaranteeing stability conditions in Lyapunov's sense for a closed-loop operation by exploiting the port-Hamiltonian structure of the Ćuk converter model. Numerical simulations evidence the advantages of using PI actions for PBC designs compared with the classical interconnection and damping (IDA-PBC) approach. All numerical simulations are conducted via MATLAB/Simulink software.
publishDate 2020
dc.date.issued.none.fl_str_mv 2020-11-25
dc.date.accessioned.none.fl_str_mv 2021-02-15T16:23:54Z
dc.date.available.none.fl_str_mv 2021-02-15T16:23:54Z
dc.date.submitted.none.fl_str_mv 2021-02-12
dc.type.coarversion.fl_str_mv http://purl.org/coar/version/c_970fb48d4fbd8a85
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status_str publishedVersion
dc.identifier.citation.spa.fl_str_mv O. Montoya, W. Gil-González, A. Garces, F. Serra and J. C. Hernandez, "PI-PBC Approach for Voltage Regulation in Ćuk Converters with Adaptive Load Estimation," 2020 IEEE International Autumn Meeting on Power, Electronics and Computing (ROPEC), Ixtapa, Mexico, 2020, pp. 1-5, doi: 10.1109/ROPEC50909.2020.9258716.
dc.identifier.uri.none.fl_str_mv https://hdl.handle.net/20.500.12585/10005
dc.identifier.url.none.fl_str_mv https://ieeexplore.ieee.org/document/9258716
dc.identifier.doi.none.fl_str_mv 10.1109/ROPEC50909.2020.9258716
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 O. Montoya, W. Gil-González, A. Garces, F. Serra and J. C. Hernandez, "PI-PBC Approach for Voltage Regulation in Ćuk Converters with Adaptive Load Estimation," 2020 IEEE International Autumn Meeting on Power, Electronics and Computing (ROPEC), Ixtapa, Mexico, 2020, pp. 1-5, doi: 10.1109/ROPEC50909.2020.9258716.
10.1109/ROPEC50909.2020.9258716
Universidad Tecnológica de Bolívar
Repositorio Universidad Tecnológica de Bolívar
url https://hdl.handle.net/20.500.12585/10005
https://ieeexplore.ieee.org/document/9258716
dc.language.iso.spa.fl_str_mv eng
language eng
dc.rights.coar.fl_str_mv http://purl.org/coar/access_right/c_14cb
dc.rights.accessrights.spa.fl_str_mv info:eu-repo/semantics/closedAccess
eu_rights_str_mv closedAccess
rights_invalid_str_mv http://purl.org/coar/access_right/c_14cb
dc.format.extent.none.fl_str_mv 5 páginas
dc.format.mimetype.spa.fl_str_mv application/pdf
dc.publisher.place.spa.fl_str_mv Cartagena de Indias
dc.source.spa.fl_str_mv 2020 IEEE International Autumn Meeting on Power, Electronics and Computing (ROPEC)
institution Universidad Tecnológica de Bolívar
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spelling Montoya, Oscar008c220c-d50f-41c7-8294-a0fd23bfd9f2Gil-González, Walterce1f5078-74c6-4b5c-b56a-784f85e52a08Garcés, Alejandro89a21224-264b-4ff5-bc9e-172f5b9be0fbSierra, Federicoe562cdf6-8cc1-48e1-a1e5-6933c8ac9e12Hernandez, J.C.ee5659b2-9a82-4f89-a451-7463ce125dc42021-02-15T16:23:54Z2021-02-15T16:23:54Z2020-11-252021-02-12O. Montoya, W. Gil-González, A. Garces, F. Serra and J. C. Hernandez, "PI-PBC Approach for Voltage Regulation in Ćuk Converters with Adaptive Load Estimation," 2020 IEEE International Autumn Meeting on Power, Electronics and Computing (ROPEC), Ixtapa, Mexico, 2020, pp. 1-5, doi: 10.1109/ROPEC50909.2020.9258716.https://hdl.handle.net/20.500.12585/10005https://ieeexplore.ieee.org/document/925871610.1109/ROPEC50909.2020.9258716Universidad Tecnológica de BolívarRepositorio Universidad Tecnológica de BolívarThis paper proposes a proportional-integral passivity-based controller (PI-PBC) for supporting voltage in linear loads integrated with Ćuk converters. An adaptive load estimator is also employed to avoid current measurements at the load point. This estimator permits an on-line estimation of the load conductance for maintaining the output voltage as constant as possible independent of its variations. The proposed PI-PBC allows guaranteeing stability conditions in Lyapunov's sense for a closed-loop operation by exploiting the port-Hamiltonian structure of the Ćuk converter model. Numerical simulations evidence the advantages of using PI actions for PBC designs compared with the classical interconnection and damping (IDA-PBC) approach. All numerical simulations are conducted via MATLAB/Simulink software.5 páginasapplication/pdfeng2020 IEEE International Autumn Meeting on Power, Electronics and Computing (ROPEC)PI-PBC Approach for Voltage Regulation in Cuk Converters with Adaptive Load Estimationinfo:eu-repo/semantics/lectureinfo:eu-repo/semantics/publishedVersionhttp://purl.org/coar/resource_type/c_8544http://purl.org/coar/version/c_970fb48d4fbd8a85Ćuk converterLoad estimatorPassivity-based controlVoltage regulationPort-Hamiltonian modelStability analysisLEMBinfo:eu-repo/semantics/closedAccesshttp://purl.org/coar/access_right/c_14cbCartagena de IndiasInvestigadoresM. M. Mardani, M. H. Khooban, A. Masoudian and T. Dragičević, "Model Predictive Control of DC-DC Converters to Mitigate the Effects of Pulsed Power Loads in Naval DC Microgrids", IEEE Trans. Ind. Electron., vol. 66, no. 7, pp. 5676-5685, July 2019.V. F. Pires, A. Cordeiro, D. Foito and J. F. Silva, "High Step-Up DC-DC Converter for Fuel Cell Vehicles Based on Merged Quadratic Boost-Ćuk", IEEE Trans. Veh. Technol., vol. 68, no. 8, pp. 7521-7530, Aug 2019.A. Diab-Marzouk and O. Trescases, "SiC-Based Bidirectional Ćuk Converter With Differential Power Processing and MPPT for a Solar Powered Aircraft", IEEE Trans. Transport. Electrific., vol. 1, no. 4, pp. 369-381, Dec 2015.L. Herrera, W. Zhang and J. Wang, "Stability Analysis and Controller Design of DC Microgrids With Constant Power Loads", IEEE Trans. Smart Grid, vol. 8, no. 2, pp. 881-888, March 2017.J. Linares-Flores, J. L. Barahona-Avalos and C. A. Bautista-Espinosa, "Passivity-Based Controller and Online Algebraic Estimation of the Load Parameter of the DC-to-DC power converter Cuk Type", IEEE Latin America Transactions, vol. 9, no. 1, pp. 784-791, March 2011.S. Ozdemir, N. Altin and I. Sefa, "Fuzzy logic based MPPT controller for high conversion ratio quadratic boost converter", Int. J. Hydrogen Energy, vol. 42, no. 28, pp. 17 748-17 759, 2017.R. Cisneros, M. Pirro, G. Bergna, R. Ortega, G. Ippoliti and M. Molinas, "Global tracking passivity-based PI control of bilinear systems: Application to the interleaved boost and modular multilevel converters", Control Eng. Pract., vol. 43, pp. 109-119, 2015.A. Balestrino, A. Landi and L. Sani, "Cuk converter global control via fuzzy logic and scaling factors", IEEE Trans. Ind. Appl., vol. 38, no. 2, pp. 406-413, March 2002.L. Malesani, R. G. Spiazzi and P. Tenti, "Performance optimization of Cuk converters by sliding-mode control", IEEE Trans. Power Electron., vol. 10, no. 3, pp. 302-309, May 1995.M. C. George and C. R. Raj, "A review on PFC Cuk converter fed BLDC motor drive using artificial neural network", 2016 International Conference on Electrical Electronics and Optimization Techniques (ICEEOT), pp. 281-286, March 2016.W. Gil-González, O. D. Montoya and A. Garces, "Direct power control for VSC-HVDC systems: An application of the global tracking passivity-based PI approach", Int. J. Electr. Power Energy Syst., vol. 110, pp. 588-597, 2019.J. C. Hernández, F. Sanchez-Sutil and F. Muñoz-Rodríguez, "Design criteria for the optimal sizing of a hybrid energy storage system in PV household-prosumers to maximize self-consumption and self-sufficiency", Energy, vol. 186, pp. 115827, 2019.A. Lopez, B. Ogayar, J. C. Hernández and F. Sutil, "Survey and assessment of technical and economic features for the provision of frequency control services by household-prosumers", Energy Policy, vol. 146, pp. 111739, 2020.J. C. Hernández, F. Sanchez-Sutil, F. Muñoz-Rodríguez and C. Baier, "Optimal sizing and management strategy for PV household-prosumers with self-consumption/sufficiency enhancement and provision of frequency containment reserve", Applied Energy, vol. 277, pp. 115529, 2020.O. D. Montoya, W. Gil-González and A. Garces, "Distributed energy resources integration in single-phase microgrids: An application of IDA-PBC and PI-PBC approaches", Int. J. Electr. Power Energy Syst., vol. 112, pp. 221-231, 2019.A. Astolfi, D. Karagiannis and R. Ortega, Nonlinear and adaptive control with applications, Springer Science & Business Media, 2007.http://purl.org/coar/resource_type/c_c94fORIGINAL166.pdf166.pdfAbstractapplication/pdf85035https://repositorio.utb.edu.co/bitstream/20.500.12585/10005/1/166.pdfab42575eecd191e505780fd20131a943MD51LICENSElicense.txtlicense.txttext/plain; charset=utf-83182https://repositorio.utb.edu.co/bitstream/20.500.12585/10005/2/license.txte20ad307a1c5f3f25af9304a7a7c86b6MD52TEXT166.pdf.txt166.pdf.txtExtracted texttext/plain928https://repositorio.utb.edu.co/bitstream/20.500.12585/10005/3/166.pdf.txt57bed67051892a07ef0fad8a3f1c2494MD53THUMBNAIL166.pdf.jpg166.pdf.jpgGenerated Thumbnailimage/jpeg44308https://repositorio.utb.edu.co/bitstream/20.500.12585/10005/4/166.pdf.jpg4a36b2801a2402f97405c10799dc0587MD5420.500.12585/10005oai:repositorio.utb.edu.co:20.500.12585/100052023-05-26 09:51:04.206Repositorio Institucional 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