Associate Professor
University of Campinas, School of Electrical and Computer Engineering, Campinas, São Paulo, Brazil
He received B.Sc. (Hons.) and P.E. degrees from the National University of Engineering, Lima, Perú, in 1999 and 2000, respectively, and an M.Sc. degree from the Federal University of Maranhão, Maranhão, Brazil in 2002; he earned a Ph.D. degree from the University of Campinas (UNICAMP), Campinas, Brazil in 2006 - all in electrical engineering. He worked as a Researcher Associate and Visiting Professor at UNICAMP (2006-2007; 2008-2010), Universitat Politècnica de Catalunya, Barcelona, Spain (2007-2008), Ryerson University, Toronto, Canada (2019) and Toronto Metropolitan University, Toronto, Canada (2025-2026). He was a Professor at Paulista State University in the Campus of Ilha Solteira (2010-2015). Currently, he is an Associate Professor in the Department of Systems and Energy at UNICAMP, researcher 1C of CNPq and IEEE Senior member. Participated as principal investigator or collaborator in more than 30 R&D projects for Brazilian utilities and govern agencies. He has published 6 books chapters, over 180 full papers in scientific events, and over 110 journal papers in scientific journals, most of which have been published in international journals indexed by ISI, which are classified as Qualis A1 by CAPES. The ISI Web of Science database lists more than 4600 citations to his articles (H index = 41), Scopus lists more than 6100 citations (H index = 45), and Google Scholar lists 9400 citations (H index = 53). He has taught in more than 20 different disciplines at the undergraduate and graduate levels, some disciplines at the graduate level are unpublished, and he aims to present the research conducted, contributing to the creation, consolidation of knowledge, and competence in strategic issues within the areas of teaching and research. He has advised over than 50 Ph.D and M.Sc. students. His interests include the development of methodologies for the operation, planning, and control of electrical power systems, and applications of artificial intelligence in power systems.
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University of Campinas, School of Electrical and Computer Engineering, Campinas, São Paulo, Brazil
University of Campinas, School of Electrical and Computer Engineering, Campinas, São Paulo, Brazil
Paulista State University, Engineering School of ILha Solteira, ILha Solteira, São Paulo, Brazil
Toronto Metropolitan University, Centre for Urban Energy, Toronto, Canada
Ryerson University, Centre for Urban Energy, Toronto, Canada
University of Campinas, School of Electrical and Computer Engineering, Campinas, São Paulo, Brazil
Technical University of Catalonia, Group of Numerical Optimization and Modeling, Barcelona, Spain
University of Campinas, School of Electrical and Computer Engineering, Campinas, São Paulo, Brazil
University of Campinas, Campinas, Brazil
An academic qualification conferred in Brazil by public universities through a rigorous competitive process restricted to Ph.D. holders, attesting to outstanding academic merit and the capacity for independent research and teaching.
University of Campinas, Campinas, Brazil
Federal University of Maranhão, Maranhão, Brazil
National University of Engineering, Lima, Perú
National University of Engineering, Lima, Perú
His main areas of expertise are electric energy systems, optimization techniques, and the mathematical tools for decision-making in energy systems.
His interests include the development of methodologies for the operation, planning, and control of electrical power systems, and applications of artificial intelligence in power systems.
Named as 2 CNPq Researcher in 2011, three years later, in 2014, he was promoted to 1D CNPq Researcher and in 2022 was promoted to 1C CNPq Researcher, thus acknowledging his productivity and ability to conduct high-level research as an independent researcher. CNPq (National Counsel of Technological and Scientific Development) researcher recognition – given to researchers who stand out among their peers, valuing their scientific production according to normative criteria established by CNPq, and specifically, by the CNPq assistance committees.
Completed supervision and co-supervision of 16 doctoral theses, 34 master's dissertations, 22 undergraduate research projects, and 5 postdoctoral fellowships. All PhD graduates under my supervision are currently engaged in teaching and research activities as university faculty members across various national and international institutions.





















































































































He has published 6 book chapters, over 180 full papers in scientific events, and over 110 journal papers in scientific journals, most of which have been published in international journals indexed by ISI: IEEE-TPWRS, GTD-IET (before IEE-pGTD ), ELSEVIER-EPSR, and ELSEVIER-IJEPES, which are classified as Qualis A1 by CAPES. The Web of Science database lists more than 4600 citations to his articles (H index = 41), Scopus lists more than 6100 citations (H index = 45), and Google Scholar lists 9400 citations (H index = 53).
http://doi.org/10.1109/JPHOTOV.2025.3596707
Journal Paper D. C. Tairo, J. A. A. Silva, J. C. López and M. J. RIDER, “Implementation of a Microgrid Energy Management System Considering Fair EV Charging, Uncertainties and Contingencies: A Multi-Objective Approach”, Applied Energy, vol. 396, pp. 126242, Oct. 2025.http://doi.org/10.1016/j.apenergy.2025.126242
Journal Paper L. Z. Terada, M. M. Magalhães, J. C. Cortez, J. Soares, Z. Vale and M. J. RIDER, “Multi-Objective Optimization for Microgrid Sizing, Electric Vehicle Scheduling and Vehicle-to-Grid Integration”, Sustainable Energy, Grids and Networks, vol. 43, pp. 101773, Sep. 2025.http://doi.org/10.1016/j.segan.2025.101773
Journal Paper M. D. Pastrana, J. C. Cortez, J. C. López, M. Lavorato and M. J. RIDER, “Analysis of the Impact of Renewable Energy Sources and Energy Storage Systems on Multi-Stage Transmission Network Expansion Planning”, IEEE Access, vol. 13, pp. 111953–111968, Jul. 2025.http://doi.org/10.1109/ACCESS.2025.3582729
Journal Paper L. A. Oroya, L. Z. Terada, J. C. Cortez, J. A. Silva and M. J. RIDER, “Distributionally Robust Optimization for Green Hydrogen Plant Planning Considering Extreme Scenarios”, International Journal of Hydrogen Energy, vol. 133, pp. 112-123, Jun. 2025.http://doi.org/10.1109/ACCESS.2024.3498600
Journal Paper W. S. Alvarez, J. C. López, F. W. Liederer, D. Dotta and M. J. RIDER, “Dynamic Security Constrained AC Optimal Power Flow for Microgrids”, Electric Power Systems Research, vol. 236, pp. 110927, Nov. 2024.http://doi.org/10.1016/j.epsr.2024.110927
Journal Paper L. Z. Terada, J. C. Cortez, G. S. Chagas, J. C. López, and M. J. RIDER, “Towards Sustainable Energy Systems: Multi-Objective Microgrid Sizing for Environmental and Economic Optimization”, Electric Power Systems Research, vol. 235, pp. 110731, Oct. 2024.http://doi.org/10.1016/j.epsr.2024.110731
Journal Paper J. C. Cortez, J. C. López, H. R. Ullon, M. Giesbrecht and M. J. RIDER, “Day-ahead Photovoltaic Power Forecasting Using Deep Learning with an Autoencoder-Based Correction Strategy”, Journal of Control, Automation and Electrical Systems, vol. 35, pp. 662–676, Aug. 2024.http://doi.org/10.1007/s40313-024-01099-5
Journal Paper J. C. López, A. Pappu, G. Hoogsteen, J. L. Hurink, and M. J. RIDER, “Distributed Management of Energy Communities Using Stochastic Profile Steering”, International Journal of Electrical Power & Energy Systems, vol. 158, pp. 109973, Jul. 2024.http://doi.org/10.1016/j.ijepes.2024.109973
Journal Paper L. H. S. Santos, J. A. A. Silva, J. C. López, M. J. RIDER and L. C. P. da Silva, “Joint Optimal Sizing and Operation of Unbalanced Three-Phase AC Microgrids Using HOMER Pro and Mixed-Integer Linear Programming”, Journal of Control, Automation and Electrical Systems, vol. 35, pp. 346–360, Apr. 2024.https://doi.org/10.1109/TPWRD.2022.3200869
Journal Paper J. A. A. Silva, J. C. López, C. P. Guzmán, N. B. Arias, M. J. RIDER and L. C. P. da Silva, “An IoT-Based Energy Management System for AC Microgrids with Grid and Security Constraints”, Applied Energy, vol. 337, pp. 120904, May 2023.http://doi.org/10.1016/j.apenergy.2023.120904
Journal Paper N. B. Arias, C. Sabillón, J. F. Franco, J. Quirós-Tortós and M. J. RIDER, “Hierarchical Optimization for User-Satisfaction-Driven Electric Vehicles Charging Coordination in Integrated MV/LV Networks”, IEEE Systems Journal, vol. 17, no. 1, pp. 1247–1258, Mar. 2023.https://doi.org/10.1109/JSYST.2022.3188220
Journal Paper K. V. dos Santos, L. H. S. Santos, N. B. Arias, J. C. López, M. J. RIDER and L. C. P. da Silva, “Optimal Sizing and Allocation of Distributed Energy Resources in Microgrids Considering Internal Network Reinforcements”, Journal of Control, Automation and Electrical Systems, vol. 34, pp. 106–119, Feb. 2023.http://doi.org/10.1109/ACCESS.2022.3224758
Journal Paper A. A. Mohamed, C. Sabillon, A. Golriz, M. Lavorato, M. J. RIDER and B. Venkatesh, “Deregulated Distribution System Planning – Incremental Capacity Auction Mechanism with Transactive DERs”, IEEE Transactions on Power Delivery, vol. 37, no. 6, pp. 4515–4526, Dec. 2022.https://doi.org/10.1109/TPWRD.2022.3150256
Journal Paper F. W. Liederer, J. C. López, D. Dotta and M. J. RIDER, “Transient Stability Constrained Optimal Power Flow Considering Fourth-Order Synchronous Generator Model and Controls”, Electric Power Systems Research, vol. 213, pp. 108667, Dec. 2022.https://doi.org/10.1016/j.epsr.2022.108667
Journal Paper L. J. Cesini Silva, C. P. Guzmán, M. J. RIDER, “Contracting Strategy for Consumers with Distributed Energy Resources in the Liberalized Electricity Market”, IEEE Access, vol. 10, pp. 80437-80447, Aug. 2022.https://doi.org/10.1109/ACCESS.2022.3194901
Journal Paper J. C. López, L. Z. Terada, M. J. RIDER and Q. Wu, “Design and Simulation of a Centralized Self-Healing Scheme for Unbalanced Three-phase Electrical Distribution Systems”, Journal of Control, Automation and Electrical Systems, vol. 33, pp. 901-911, Jun. 2022.https://doi.org/10.1007/s40313-021-00850-6
Journal Paper R. T. Zoppei, M. A. J. Delgado, L. H. Macedo, M. J. RIDER, and R. Romero, “A Branch and Bound Algorithm for Transmission Network Expansion Planning Using Nonconvex Mixed-Integer Nonlinear Programming Models”, IEEE Access, vol. 10, pp. 39875–39888, Apr. 2022.https://doi.org/10.1109/ACCESS.2022.3166153
Journal Paper L. A. Zaneti, N. B. Arias, M. C. de Almeida and M. J. RIDER, “Sustainable Charging Schedule of Electric Buses in a University Campus: A Rolling Horizon Approach”, Renewable & Sustainable Energy Reviews, vol. 161, pp. 112276, Jun. 2022.https://doi.org/10.1109/tste.2021.3073658
Journal Paper F. B. B. Rolim, F. C. L. Trindade, and M. J. RIDER, “Adaptive Protection Methodology for Modern Electric Power Distribution Systems”, Journal of Control, Automation and Electrical Systems, vol. 32, pp. 1377–1388, Oct. 2021.https://doi.org/10.1007/s40313-021-00774-1
Journal Paper J. A. A da Silva, J. C. López, N. B. Arias, M. J. RIDER and L. C. P. da Silva, “An Optimal Stochastic Energy Management System for Resilient Microgrids”, Applied Energy, vol. 300, pp. 117435, Oct. 2021.https://doi.org/10.1016/j.apenergy.2021.117435
Journal Paper A. Argüello and M. J. RIDER, “A Discrete Time Domain-Based MILP Framework for Control Parameter Tuning”, IEEE Systems Journal, vol. 15, no. 3, pp. 3462–3469, Sep. 2021.https://doi.org/10.1109/jsyst.2020.2993778
Journal Paper S. G. Constante F., J. C. López and M. J. RIDER, “Optimal Reactive Power Dispatch with Discrete Controllers Using a Branch-and-Bound Algorithm: A Semidefinite Relaxation Approach”, IEEE Transactions on Power Systems, vol. 36, no. 5, pp. 4539–4550, Sep. 2021.https://doi.org/10.1109/tpwrs.2021.3056637
Journal Paper J. C. López, J. I. Ota, M. J. RIDER, J. A. Pomilio, L. C. P. da Silva e R. G. Bento, “Objetivos e Desafios de um Projeto de Microrredes”, Revista Eletricidade Moderna, ISSN: 0100–2104, vol. 07/08, pp. 50-55, Jul. 2021. Journal Paper N. B. Arias, J. C. López, S. Hashemi, J. F. Franco and M. J. RIDER, “Multi-Objective Sizing of Battery Energy Storage Systems for Stackable Grid Applications”, IEEE Transactions on Smart Grid, vol. 12, no. 3, pp. 2708-2721, May. 2021.https://doi.org/10.1109/tsg.2020.3042186
Journal Paper C. Santos, M. J. RIDER and C. Lyra, “Optimized Integration of a Set of Small Renewable Sources into a Bulk Power System”, IEEE Transactions on Power Systems, vol. 36, no. 1, pp. 248-260, Jan. 2021.https://doi.org/10.1016/j.epsr.2020.106526
Journal Paper E. Alvarez, M. Paredes and M. J. RIDER, “Semidefinite Relaxation and Generalized Benders Decomposition to Solve the Transmission Expansion Network and Reactive Power Planning”, IET Generation, Transmission and Distribution, vol. 14, no. 11, pp. 2160-2168, Jun. 2020.https://doi.org/10.1049/iet-gtd.2019.0331
Journal Paper C. Guzmán-Lascano, N. B. Arias, J. F. Franco, M. J. RIDER and R. Romero, “Enhanced Coordination Strategy for an Aggregator of Distributed Energy Resources Participating in the Day-Ahead Reserve Market”, Energies, Reference: energies-763258, vol. 13, no. 8, pp. 1965-1986, Apr. 2020.https://doi.org/10.3390/en13081965
Journal Paper F. Shen, J. C. López, Q. Wu, M. J. RIDER, T. Lu and N. D. Hatziargyriou, “Distributed Self-healing Scheme for Unbalanced Electrical Distribution Systems Based on Alternating Direction Method of Multipliers”, IEEE Transactions on Power Systems, vol. 35, no. 3, pp. 2190-2199, May 2020.https://doi.org/10.1109/tpwrs.2019.2958090
Journal Paper B. Rosado, R. Torquato, B. Venkatesh, H. B. Gooi, W. Freitas and M. J. RIDER, “Framework for Optimizing the Demand Contracted by Large Customers”, IET Generation, Transmission and Distribution, vol. 14, no. 4, pp. 635-644, Feb. 2020.https://doi.org/10.1049/iet-gtd.2019.1343
Journal Paper P. P. Vergara, J. C. López, M. J. RIDER, H. R. Shaker, L. C. P. da Silva and B. N. Jørgensen, “A Stochastic Programming Model for the Optimal Operation of Unbalanced Three-phase Islanded Microgrids”, International Journal of Electrical Power and Energy Systems, vol. 115, pp. 105446, Feb. 2020.https://doi.org/10.1109/tpwrs.2019.2909404
Journal Paper P. P. Vergara, J. M. Rey, J. C. López, M. J. RIDER, L. C. P. da Silva, H. R. Shaker and B. N. Jørgensen, “A Generalized Model for the Optimal Operation of Microgrids in Grid-Connected and Islanded Droop-Based Mode”, IEEE Transactions on Smart Grid, vol. 10, no. 5, pp. 5032-5045, Sep. 2019.https://doi.org/10.1109/tsg.2018.2873411
Journal Paper J. S. Acosta, J. C. López and M. J. RIDER, “Optimal Multi-Scenario, Multi-Objective Allocation of Fault Indicators in Electrical Distribution Systems Using a Mixed-Integer Linear Programming Model”, IEEE Transactions on Smart Grid, vol. 10, no. 4, pp. 4508-4519, Jul. 2019.https://doi.org/10.1109/tsg.2018.2862905
Journal Paper J. S. Giraldo, J. A. Castrillon, J. C. López, M. J. RIDER and C. A. Castro, “Microgrid Energy Management Using Robust Convex Optimization”, IEEE Transactions on Smart Grid, vol. 10, no. 4, pp. 4520-4530, Jul. 2019.https://doi.org/10.1109/tsg.2018.2863049
Journal Paper J. A. Pinzón, P. P. Vergara, L. C. P. da Silva and M. J. RIDER, “Optimal Management of Energy Consumption and Comfort for Smart Buildings Operating in a Microgrid”, IEEE Transactions on Smart Grids, vol. 10, no. 3, pp. 3236-3247, May 2019.https://doi.org/10.1109/tsg.2018.2822276
Journal Paper J. C. López, M. J. RIDER and Q. Wu, “Parsimonious Short-Term Load Forecasting for Optimal Operation Planning of Electrical Distribution Systems”, IEEE Transactions on Power Systems, vol. 34, no. 2, pp. 1427-1437, Mar. 2019.https://doi.org/10.1109/tpwrs.2018.2872388
Journal Paper P. P. Vergara, J. C. López, M. J. RIDER and L. C. P. da Silva, “Optimal Operation of Unbalanced Three-Phase Islanded Droop-Based Microgrids”, IEEE Transactions on Smart Grids, vol. 10, no. 1, pp. 928-940, Jan. 2019.https://doi.org/10.1016/j.ijepes.2018.05.015
Journal Paper J. C. López, J. F. Franco, M. J. RIDER and R. Romero, “Optimal Restoration/Maintenance Switching Sequence of Unbalanced Three-Phase Distribution Systems”, IEEE Transactions on Smart Grids, vol. 9, no. 6, pp. 6058-6068, Nov. 2018.https://doi.org/10.1109/tsg.2017.2703152
Journal Paper H. A. Ruiz, E. M. Carreño, M. J. RIDER and J. R. S. Mantovani, “Distflow Based State Estimation for Power Distribution Networks”, Energy Systems, vol. 9, no. 4, pp. 1055-1070, Nov. 2018.https://doi.org/10.1007/s12667-017-0269-1
Journal Paper F. V. Cerna, M. Pourakbari, R. Romero and M. J. RIDER, “Optimal Delivery Scheduling and Charging of EVs in the Navigation of a City Map”, IEEE Transactions on Smart Grids, vol. 9, no. 5, pp. 4815-4827, Sep. 2018.https://doi.org/10.1109/tsg.2017.2672801
Journal Paper J. E. Cardona, J. C. López and M. J. RIDER, “Decentralized Electrical Vehicles Charging Coordination Using Only Local Voltage Magnitude Measurements”, Electric Power Systems Research, vol. 161, pp. 139-151, Aug. 2018.https://doi.org/10.1016/j.epsr.2018.04.003
Journal Paper F. M. Wittmann, J. C. López and M. J. RIDER, “Non-Intrusive Load Monitoring Algorithm Using Mixed-Integer Linear Programming”, IEEE Transactions on Consumer Electronics, vol. 64, no. 2, pp. 180-187, May 2018.https://doi.org/10.1109/tce.2018.2843292
Journal Paper J. C. López, P. P. Vergara, C. Lyra, M. J. RIDER and L. C. P. da Silva, “Optimal Operation of Radial Distribution Systems Using Extended Dynamic Programming”, IEEE Transactions on Power Systems, vol. 33, no. 2, pp. 1352-1363, Mar. 2018.https://doi.org/10.1016/j.eneco.2017.09.018
Journal Paper C. F. Sabillon, O. D. M. Dominguez, J. F. Franco, M. Lavorato and M. J. RIDER, “Volt-VAr Control and Energy Storage Device Operation to Improve the Electric Vehicle Charging Coordination in Unbalanced Distribution Systems”, IEEE Transactions on Sustainable Energy, vol. 8, no. 4, pp. 1560-1570, Oct. 2017.https://doi.org/10.1109/tste.2017.2695195
Journal Paper P. P. Vergara, J. C. López, L. C. P. da Silva and M. J. RIDER, “Security-Constrained Optimal Energy Management System for Three-Phase Residential Microgrids”, Electric Power Systems Research, vol. 146, pp. 371-382, May 2017.https://doi.org/10.1049/iet-gtd.2016.0081
Journal Paper J. C. López, J. F. Franco and M. J. RIDER, “Optimization-Based Switch Allocation to Improve Energy Losses and Service Restoration in Radial Electrical Distribution Systems”, IET Generation, Transmission and Distribution, vol. 10, no. 11, pp. 2792-2801, Aug. 2016.https://doi.org/10.1049/iet-gtd.2015.1509
Journal Paper J. C. López, M. Lavorato and M. J. RIDER, “Optimal Reconfiguration of Electrical Distribution Systems Considering Reliability Indices Improvement”, International Journal of Electrical Power & Energy Systems, vol. 78, pp. 837-845, Jun. 2016.https://doi.org/10.1016/j.ijepes.2015.12.023
Journal Paper J. F. Franco, M. J. RIDER and R. Romero, “Robust Multi-Stage Substation Expansion Planning Considering Stochastic Demand”, IEEE Transactions on Power Systems, vol. 31, no. 3, pp. 2125 – 2134, May 2016.https://doi.org/10.1109/tpwrs.2015.2443175
Journal Paper A. Tabares, J. F. Franco, M. Lavorato and M. J. RIDER, “Multi-Stage Long-Term Expansion Planning of Electrical Distribution Systems Considering Multiple Alternatives”, IEEE Transactions on Power Systems, vol. 31, no. 3, pp. 1900 – 1914, May 2016.https://doi.org/10.1109/tpwrs.2015.2448942
Journal Paper C. F. Sabillon, J. F. Franco, M. J. RIDER and R. Romero, “A New Methodology for the Optimal Charging Coordination of Electric Vehicles Considering Vehicle-to-Grid Technology”, IEEE Transactions on Sustainable Energy, vol. 7, no. 2, pp. 596-607, Apr. 2016.https://doi.org/10.1109/tste.2015.2505502
Journal Paper J. C. López, M. Lavorato, J. F. Franco and M. J. RIDER, “Robust Optimization Applied to the Reconfiguration of Distribution Systems with Reliability Constraints”, IET Generation, Transmission and Distribution, vol. 10, no. 4, pp. 917-927, Mar. 2016.https://doi.org/10.1049/iet-gtd.2015.0558
Journal Paper M. Pourakbari-Kasmaei, M. J. RIDER and J. R. S. Mantovani, “Multi-Area Environmentally Constrained Active-Reactive Optimal Power Flow: A Tie Line Planning Study”, IET Generation, Transmission and Distribution, vol. 10, no. 2, pp. 299-309, Feb. 2016.https://doi.org/10.1049/iet-gtd.2014.1195
Journal Paper R. Romero, J. F. Franco, F. B. Leão, M. J. RIDER and E. S. de Souza, “A New Mathematical Model for the Restoration Problem in Balanced Radial Distribution Systems”, IEEE Transactions on Power Systems, vol. 31, no. 2, pp. 1259-1268, Mar. 2016.https://doi.org/10.1109/tpwrs.2015.2418160
Journal Paper P. L. Cavalcante, J. C. López, J. F. Franco, M. J. RIDER, A. V. Garcia, M. R. R. Malveira, L. L. Martins and L. C. Direito, “Centralized Self-Healing Scheme for Electrical Distribution Systems”, IEEE Transactions on Smart Grids, vol. 7, no. 1, pp. 145-155, Jan. 2016.https://doi.org/10.1109/tsg.2015.2454436
Journal Paper M. Pourakbari-Kasmaei, M. J. RIDER and J. R. S. Mantovani, “An Unambiguous Distance-Based MIQP Model to Solve Economic Dispatch Problems with Disjoint Operating Zones”, IEEE Transactions on Power Systems, vol. 31, no. 1, pp. 825-826, Jan. 2016.https://doi.org/10.1109/tsg.2015.2419134
Journal Paper P. M. de Quevedo, J. Contreras, M. J. RIDER and J. Allahdadian, “Contingency Assessment and Network Reconfiguration in Distribution Grids Including Wind Power and Energy Storage”, IEEE Transactions on Sustainable Energy, vol. 6, no. 4, pp. 1524-1533, Oct. 2015.https://doi.org/10.1109/tste.2015.2453368
Journal Paper J. F. Franco, M. J. RIDER and R. Romero, “A Mixed-Integer Linear Programming Model for the Electric Vehicle Charging Coordination Problem in Unbalanced Electrical Distribution Systems”, IEEE Transactions on Smart Grids, vol. 6, no. 5, pp. 2200-2210, Sep. 2015.https://doi.org/10.1109/tsg.2015.2394489
Journal Paper D. Tejada, J. M. López-Lezama, M. J. RIDER and G. Vinasco, “Transmission Network Expansion Planning Considering Repowering and Reconfiguration”, International Journal of Electrical Power & Energy Systems, vol. 69, pp. 213-221, Jul. 2015.https://doi.org/10.1016/j.ijepes.2015.01.008
Journal Paper R. R. Gonçalves, J. F. Franco and M. J. RIDER, “Short-Term Expansion Planning of Radial Electrical Distribution System Using Mixed-Integer Linear Programming”, IET Generation, Transmission and Distribution, vol. 9, no. 3, pp. 256-266, Mar. 2015.https://doi.org/10.1049/iet-gtd.2014.0231
Journal Paper E. F. da Silva, M. Rahmani and M. J. RIDER, “A Search Space Reduction Strategy and a Mathematical Model for Multistage Transmission Expansion Planning with N-1 Security Constraints”, Journal of Control, Automation and Electrical Systems, vol. 26, no. 1, pp. 57-67, Feb. 2015.https://doi.org/10.1007/s40313-014-0154-2
Journal Paper J. de Souza, M. J. RIDER and J. R. S. Mantovani, “Planning of Distribution Systems Using Mixed-Integer Linear Programming Models Considering Network Reliability”, Journal of Control, Automation and Electrical Systems, vol. 26, no. 1, pp. 170-179, Feb. 2015.https://doi.org/10.1007/s40313-014-0165-z
Journal Paper J. A. Jardini, T. Sousa, R. A. Romero, M. J. RIDER, M. A. B. Horita, M. Bassini and M. R. Cavalheiro, “Power Flow Control in the Converters Interconnecting AC-DC Meshed Systems”, Electrotechnical Review, vol. 2015, no. 1, pp. 46-49, Jan. 2015.https://doi.org/10.1016/j.ijepes.2014.04.048
Journal Paper M. Pourakbari-Kasmaei, M. J. RIDER and J. R. S. Mantovani, “An Unequivocal Normalization-Based Paradigm to Solve Dynamic Economic and Emission Active-Reactive OPF”, Energy, vol. 73, pp. 554-566, Aug. 2014.https://doi.org/10.1016/j.energy.2014.06.057
Journal Paper G. Vinasco, D. Tejada, E. F. da Silva and M. J. RIDER, “Transmission Network Expansion Planning of the Colombian Electrical System: Connecting of Ituango Hydroelectric Power Plant”, Electric Power Systems Research, vol. 110, pp. 94-103, May. 2014.https://doi.org/10.1016/j.epsr.2013.12.016
Journal Paper D. Tejada, J. M. López-Lezama and M. J. RIDER, “Planeamiento de la Expansión de la Red de Transmisión en Sistemas Eléctricos de Potencia Considerando Reconfiguraciones de Red”, Información Tecnológica (CIT), vol. 25, no. 1, pp. 85–96, Ene-Feb. 2014. Journal Paper M. C. O. Borges, J. F. Franco and M. J. RIDER, “Optimal Reconfiguration of Electrical Distribution Systems using Mathematical Programming”, Journal of Control, Automation and Electrical Systems, vol. 25, no. 1, pp. 103-111, Feb. 2014.https://doi.org/10.1109/tpwrs.2013.2266346
Journal Paper R. R. Gonçalves, R. P. Alves, J. F. Franco and M. J. RIDER, “Operation Planning of Electric Power Distribution Networks Using a Mixed Integer Linear Model”, Journal of Control, Automation and Electrical Systems, vol. 24, no. 5, pp. 668-679, Oct. 2013.https://doi.org/10.1007/s40313-013-0055-9
Journal Paper M. Rahmani, R. Romero and M. J. RIDER, “Strategies to Reduce the Number of Variables and the Combinatorial Search Space of the Multistage Transmission Expansion Planning Problem”, IEEE Transactions on Power Systems, vol. 28, no. 3, pp. 2164–2173, Aug. 2013.https://doi.org/10.1109/tpwrs.2012.2223241
Journal Paper M. J. RIDER, J. M. López-Lezama, J. Contreras and A. Padilha-Feltrin, “Bilevel Approach for Optimal Location and Contract Pricing of Distributed Generation in Radial Distribution Systems Using Mixed-Integer Linear Programming”, IET Generation, Transmission and Distribution, vol. 7, no. 7, pp. 724–734, Jul. 2013.https://doi.org/10.1049/iet-gtd.2012.0369
Journal Paper J. F. Franco, M. J. RIDER, M. Lavorato and R. Romero, “A Mixed-Integer LP Model for the Optimal Allocation of Voltage Regulators and Capacitors in Radial Distribution Systems”, International Journal of Electrical Power & Energy Systems, vol. 48, pp. 123–130, Jun. 2013.https://doi.org/10.1016/j.ijepes.2012.11.027
Journal Paper A. C. Rueda, J. F. Franco, M. J. RIDER, A. Padilha-Feltrin and R. Romero, “A Mixed-Integer Linear Programming Approach for Optimal Type, Size and Allocation of Distributed Generation in Radial Distribution Systems”, Electric Power Systems Research, vol. 97, pp. 133–143, Apr. 2013.https://doi.org/10.1016/j.epsr.2012.12.009
Journal Paper J. F. Franco, M. J. RIDER, M. Lavorato and R. Romero, “A Mixed-Integer LP Model for the Reconfiguration of Radial Electric Distribution Systems Considering Distributed Generation”, Electric Power Systems Research, vol. 97, pp. 51–60, Apr. 2013.https://doi.org/10.1016/j.epsr.2012.12.005
Journal Paper M. Rahmani, R. Romero and M. J. RIDER, “Risk/Investment-Driven Transmission Expansion Planning with Multiple Scenarios”, IET Generation, Transmission and Distribution, vol. 7, no. 2, pp. 154–165, Feb. 2013.https://doi.org/10.1049/iet-gtd.2011.0742
Journal Paper M. Lavorato, J. F. Franco, M. J. RIDER and R. Romero, Closure to Disccussion on “Imposing Radiality Constraints in Distribution System Optimization Problems”, IEEE Transactions on Power Systems, vol. 28, no. 1, pp. 568–569, Feb. 2013.https://doi.org/10.1109/tpwrs.2012.2236475
Journal Paper J. F. Franco, M. J. RIDER, M. Lavorato and R. Romero, “Optimal Conductor Size Selection and Reconductoring in Radial Distribution Systems Using a Mixed-Integer LP Approach”, IEEE Transactions on Power Systems, vol. 28, no. 1, pp. 10–20, Feb. 2013.https://doi.org/10.1016/j.epsr.2012.02.015
Journal Paper L. A. Gallego, M. J. RIDER, M. Lavorato and A. Padilha-Feltrin, “An Enhanced Genetic Algorithm to Solve the Static and Multistage Transmission Network Expansion Planning”, Journal of Electrical and Computer Engineering, vol. 2012, 12 pages, 2012. Journal Paper F. J. Heredia, M. J. RIDER and C. Corchero, “A Stochastic Programming Model for the Optimal Electricity Market Bid Problem with Bilateral Contracts for Thermal and Combined Cycle Units”, Annals of Operations Research, vol. 193, no. 1, pp. 107–127, Mar. 2012.https://doi.org/10.1007/s10479-011-0847-x
Journal Paper M. Lavorato, J. F. Franco, M. J. RIDER and R. Romero, “Imposing Radiality Constraints in Distribution System Optimization Problems”, IEEE Transactions on Power Systems, vol. 27, no. 1, pp. 172–180, Feb. 2012.https://doi.org/10.1109/tpwrs.2011.2126291
Journal Paper M. Granada, M. J. RIDER and J. R. S. Mantovani, “Fluxo de Potência AC Para Operação Independente de Áreas Interligadas”, Revista Controle & Automação, vol. 22, no. 4, pp. 325-333, Jul.–Ago, 2011.https://doi.org/10.1016/j.epsr.2010.01.008
Journal Paper C. R. N. Estevam, M. J. RIDER, E. Amorim and J. R. S. Mantovani, “Reactive Power Dispatch and Planning Using a Non-Linear Branch-and-Bound Algorithm”, IET Generation, Transmission and Distribution, vol. 4, no. 8, pp. 963–973, Aug. 2010.https://doi.org/10.1049/iet-gtd.2009.0422
Journal Paper M. Lavorato, M. J. RIDER, A. V. Garcia and R. Romero, “A Constructive Heuristic Algorithm for Distribution System Planning”, IEEE Transactions on Power Systems, vol. 25, no. 3, pp. 1734–1742, Aug. 2010.https://doi.org/10.1109/tpwrs.2009.2038164
Journal Paper F. J. Heredia, M. J. RIDER and C. Corchero, “Optimal Bidding Strategies for Thermal and Generic Programming Units in the Day-ahead Electricity Market”, IEEE Transactions on Power Systems, vol. 25, no. 3, pp. 1504–1518, Aug. 2010.https://doi.org/10.1109/tpwrs.2009.2038269
Journal Paper M. Granada, M. J. RIDER and J. R. S. Mantovani, “Dos Técnicas de Descomposición Aplicadas al Problema de Flujo de Potencia Óptimo Reactivo Multi-areas”, Revista Dyna Medellín, vol. 77, no. 162, pp. 303–312, Medellín, Colombia, Jun. 2010. Journal Paper A. T. Azevedo, A. R. L. Oliveira, M. J. RIDER and S. Soares, “How to Efficiently Incorporate Facts Devices in Optimal Active Power Flow Model”, Journal of Industrial and Management Optimization (JIMO), vol. 6, no. 2, pp. 315–331, May 2010.https://doi.org/10.3934/jimo.2010.6.315
Journal Paper S. Segura, R. Romero and M. J. RIDER, “Efficient Heuristic Algorithm Used for Optimal Capacitor Placement in Distribution Systems”, International Journal of Electrical Power & Energy Systems, vol. 32, no. 1, pp. 71–78, Jan. 2010.https://doi.org/10.1109/TPWRS.2007.907592
Journal Paper M. J. RIDER, A. V. Garcia and R. Romero, “Power System Transmission Network Expansion Planning Using AC Model”, IET Generation, Transmission and Distribution, vol. 1, no. 5, pp. 731–742, Set. 2007.https://doi.org/10.1049/ip-gtd:20045217
Journal Paper I. G. Sánchez, R. Romero, J. R. S. Mantovani and M. J. RIDER, “Transmission– Expansion Planning Using the DC Model and Nonlinear–Programming Technique”, IEE Proceedings of Generation, Transmission and Distribution, vol. 152, no. 6, pp. 763–769, Nov. 2005.https://doi.org/10.1049/ip-gtd:20041065
Journal Paper M. J. RIDER, C. A. Castro, V. L. Paucar and A. V. Garcia, “Higher Order Interior–Point Method for Minimising Load–Shedding in a Competitive Electric Power Market”, IEE Proceedings of Generation, Transmission and Distribution, vol. 151, no. 4, pp. 433–440, Jul. 2004.https://doi.org/10.1049/ip-gtd:20040470
Journal Paper M. J. RIDER, V. L. Paucar and A. V. Garcia, “Enhanced Higher–Order Interior–Point Method to Minimise Active Power Losses in Electric Energy Systems”, IEE Proceedings of Generation, Transmission and Distribution, vol. 151, no. 4, pp. 517–525, Jul. 2004.https://doi.org/10.1049/ip-gtd:20040610
Journal Paper M. J. RIDER and V. L. Paucar, “Application of a Nonlinear Reactive Power Pricing Model for Competitive Electric Markets”, IEE Proceedings of Generation, Transmission and Distribution, vol. 151, no. 3, pp. 407–414, May. 2004.https://doi.org/10.1049/ip-gtd:20040385
Journal Paper M. J. RIDER, V. L. Paucar, A. V. Garcia and M. F. Bedriñana, “Flujo de Potencia Óptimo Usando un Método de Puntos Interiores para Sistemas Eléctricos de Potencia”, Revista Técnico–Científica Publicación de la Universidad Nacional de Ingeniería (Revista TECNIA), vol. 14, no. 1, pp. 59–72, Lima, Perú, Jul. 2004. Journal Paper M. J. RIDER, V. L. Paucar, A. V. Garcia y M. F. Bedriñana, “Minimización del Corte de Carga en Sistemas de Potencia Mediante un Método de Optimización de Puntos Interiores”, Revista Técnico–Científica Publicación de la Universidad Nacional de Ingeniería (Revista TECNIA), vol. 14, no. 1, pp. 73–86, Lima, Perú, Julio 2004.https://doi.org/10.1016/S0378-7796(02)00030-5
Journal Paper V. L. Paucar and M. J. RIDER, “External Equivalents for Security Analysis of Interconnected Power Systems”, Revista Técnico–Científica Publicación de la Universidad Nacional de Ingeniería (Revista TECNIA), vol. 12, no. 1, pp. 31–42, Lima, Perú, Jul. 2002. Journal Paper J. E. O. Pessanha, V. L. Paucar and M. J. RIDER, "Análisis en el Dominio del Tiempo de los Mecanismos Inherentes al Fenómeno de Estabilidad de Tensión en Sistemas de Potencia", Revista Técnico–Científica Publicación de la Universidad Nacional de Ingeniería (Revista TECNIA), vol. 12, no. 1, pp. 11–21, Lima, Perú, Jul. 2002.He teaches disciplines at undergraduate and graduate levels. Some disciplines at the graduate level are unpublished, and he aims to present the research conducted, contributing to the creation, consolidation of knowledge, and competence in strategic issues within the areas of teaching and research.
Thursday: 14h00 - 16h00 (Turma A) and 16h00 - 18h00 (Turma B).
Room: FE03.
Lecture 01 – Introdução.
Lecture 02 – Luminotécnica e previsão de carga.
Lecture 03 – Ligação de lâmpadas e tomadas e quadro de carga.
Lecture 04 – Dimensionamento de condutores, eletrodutos e proteção.
Lecture 05 – Carga instalada e demanda.
Lecture 06 – Revisão do projeto residencial.
Lecture 07 – Elementos de projeto industrial.
Lecture 08 – Dimensionamento de condutores elétricos.
Lecture 09 – Dimensionamento de eletrodutos.
Lecture 10 – Determinação e correção do fator de potência.
Lecture 11 – Curto-circuito nas instalações elétricas.
Lecture 12 – Proteção nas instalações industriais.
Lecture 13 – Seletividade e coordenação da proteção.
Lecture 14 – Revisão do projeto industrial.
Lecture 15 – Entrada de energia elétrica em média tensão.
M - Média Final
Lecture 01 – Introdução.
Lecture 02 – Problemas Clássicos de PO e Solução Intuitiva.
Lecture 03 – Modelagem Matemática.
Lecture 04 – Modelagem Matemática (continuação).
Lecture 05 – Ferramentas para resolver problemas de PL.
Lecture 06 – AMPL e CPLEX.
Lecture 07 – Resolução gráfica de problemas de PL.
Lecture 08 – Introdução ao algoritmo Simplex.
Lecture 09 – Introdução ao algoritmo Simplex (continuação).
Lecture 10 – Algoritmo Simplex.
Lecture 11 – Algoritmo Simplex (continuação).
Lecture 12 – Algoritmo Simplex - Casos Especiais.
Lecture 13 – Análise de Sensibilidade.
Lecture 14 – Dualidade.
Lecture 15 – Problema do Transporte.
Lecture 16 – Problemas de Designação.
Lecture 17 – Introdução à Programação Inteira.
Lecture 18 – Algoritmo Branch–and–Bound.
Lecture 19 – Algoritmo Branch–and–Bound (continuação).
Lecture 20 – Elementos de Modelagem Linear Inteira.
Lecture 21 – Problemas de Programação Linear-Inteira.
Lecture 22 – Otimização em Redes - Problema do Caixeiro Viajante.
Lecture 23 – Otimização em Redes - O Problema do Caminho Mínimo.
Lecture 24 – Otimização em Redes - O Problema da Árvore Geradora Mínima.
Lecture 25 – Introdução à Programação Não-Linear.
Lecture 26 – Introdução à Programação Não-Linear (continuação).
Lecture 27 – Introdução à Programação Não-Linear (continuação).
Lecture 28 – Introdução à Programação Não-Linear (continuação).
Lecture 29 – Introdução à Meta-Heurística.
Lecture 30 – Introdução à Meta-Heurística (continuação).
Lecture 01 - Apresentação da disciplina.
Lecture 02 - Curvas Características de Bipolos.
Lecture 03 - Formas de ondas.
Lecture 04 - Comportamento de circuitos c.a.
Lecture 05 - Conceitos de Fasor e Impedância.
Lecture 06 - Fasor.
Lecture 07 - Potência em circuitos de corrente alternada.
Lecture 08 - Circuitos trifásicos.
Lecture 09 - Potência em circuitos trifásicos.
Lecture 10 - Transformadores.
Lecture 11 - Acionamento e proteção em instalações elétricas.
Lecture 12 - Motor de indução .
Lecture 13 - Alternador (gerador c.a.).
Lecture 14 - Motor de corrente contínua.
Lecture 01 – Introdução.
Lecture 02 – Corrente, Tensão, Potência e Energia.
Lecture 03 – Resistência, Lei de Ohm e Leis de Kirchhoff.
Lecture 04 – Leis de Kirchhoff.
Lecture 05 – Circuitos em Série e Paralelo, Equipamentos de Medida.
Lecture 06 – Fontes Controladas e Amplificador Operacional.
Lecture 07 – Teoremas da Superposição, Thévenin e Norton.
Lecture 08 – Capacitores e Indutores.
Lecture 09 – Análise de circuitos RC e RL.
Lecture 10 – Corrente Contínua vs. Corrente Alternada.
Lecture 11 – Valores Característicos das Formas de Ondas Periódicas.
Lecture 12 – Comportamento de Circuitos em Corrente Alternada.
Lecture 13 – Fasores, Impedância e Diagrama Fasorial - Parte 1.
Lecture 14 – Fasores, Impedância e Diagrama Fasorial - Parte 2.
Lecture 15 – Leis de Kirchhoff e Associação de Impedâncias em CA.
Lecture 16 – Potência em Circuitos de Corrente Alternada.
Lecture 17 – Fator de Potência.
Lecture 18 – Correção de Fator de Potência.
Lecture 19 – Circuitos Trifásicos: Fontes e Conexões.
Lecture 20 – Circuitos Trifásicos: Equilibrados e Desequilibrados.
Lecture 21 – Potência em Circuitos Trifásicos.
Lecture 22 – Transformador Monofásico.
Lecture 23 – Modelo de um Transformador Monofásico.
Lecture 24 – Polaridade, Regulação, Rendimento e Autotransformador.
Lecture 25 – Transformadores Trifásicos.
Lecture 26 – Distribuição de Energia Elétrica, Choque Elétrico e Acionamento.
Lecture 27 – Interruptores, Contatores e Dispositivos de Proteção.
Lecture 28 – Motores de Corrente Contínua.
Lecture 29 – Motores de Indução.
Lecture 30 – Máquinas Síncronas.
Lecture 01 – Produção de Campo Magnético a Partir de Corrente Elétrica.
Lecture 02 – Densidade de Fluxo Magnético, Fluxo Magnético e Força de Lorentz.
Lecture 03 – Imã Permanente, Eletroímã e Ferromagnetismo.
Lecture 04 – Curva de Magnetização.
Lecture 05 – Circuitos Magnéticos.
Lecture 06 – Circuitos Magnéticos (continuação).
Lecture 07 – Circuitos Magnéticos (continuação).
Lecture 08 – Faraday, Lenz, Indutância e Energia Armazenada.
Lecture 09 – Perdas no Núcleo.
Lecture 10 – Corrente de Excitação e Ímãs Permanentes.
Lecture 11 – Transformador.
Lecture 12 – Modelo do Transformador.
Lecture 13 – Circuito Equivalente e Determinação dos Parâmetros.
Lecture 14 – Polaridade, Regulação e Rendimento.
Lecture 15 – Autotransformador.
Lecture 16 – Representação do Transformador em PU.
Lecture 17 – Transformadores Trifásicos.
Lecture 18 – Transformadores Trifásicos (continuação).
Lecture 19 – Conexão Delta Aberto.
Lecture 20 – Conversão Eletromecânica de Energia.
Lecture 21 – Energia e Co-energia.
Lecture 22 – Força Magnética em um Sistema Eletromecânico.
Lecture 23 – Introdução às Máquinas Elétricas Rotativas.
Lecture 24 – Introdução à Máquina de Corrente Contínua.
Lecture 25 – Introdução à Máquina de Corrente Contínua (continuação).
Lecture 26 – Introdução à Máquina de Indução.
Lecture 27 – Introdução à Máquina de Indução (continuação).
Lecture 28 – Introdução à Máquina Síncrona.
Lecture 29 – Introdução à Máquina Síncrona (continuação).
Lecture 30 – Introdução à Máquinas Especiais.
Laboratory 01 – Propriedades de Circuitos Magnéticos.
Laboratory 02 – Estudo de Eletroímã.
Preparation of Laboratory 02 – Estudo de Eletroímã.
Laboratory 03 – Transformador Elétrico.
Preparation of Laboratory 03 – Transformador Elétrico.
Laboratory 04 – Funcionamento de Máquinas Elétricas Rotativas.
Preparation of Laboratory 04 – Funcionamento de Máquinas Elétricas Rotativas.
Laboratory 00 - Normas de Segurança e Procedimentos.
Laboratory 01 - Informações Gerais.
Laboratory 02 - Simbologia.
Laboratory 03 - Introdução.
Laboratory 04 - Máquina de Corrente Contínua.
Laboratory 05 - Máquina de Indução.
Laboratory 06 - Máquina Síncrona.
Lecture 01 – Apresentação.
Lecture 02 – Modelagem e Otimização.
Lecture 03 – Linguagem de Modelagem Algébrico.
Lecture 04 – Despacho Economico, Fluxo de Potência Ótimo CC e Pre-Despacho.
Lecture 05 – Fluxo de Potência Ótimo Não Linear.
Lecture 06 – Planejamento da Expansão do Sistema de Transmissão.
Lecture 01 – Apresentação.
Lecture 02 – Revisão de Programação Linear e Não-Linear.
Lecture 03 – Introdução aos Métodos de Ponto Interior.
Lecture 04 – Métodos de Ponto Interior para Programaçãao Linear e Quadrática.
Lecture 05 – Métodos de Ponto Interior Para Programação Não-Linear.
Lecture 06 – Aplicações: Despacho Econômico Linearizado.
Lecture 07 – Aplicações: Planejamento da Expansão do Sistema de Transmissão.
Lecture 08 – Aplicações: Mercados Elétricos.
Lecture 09 – Aplicações: Fluxo de Potência Ótimo Usando Programação Linear Sucessiva.
Lecture 10 – Aplicações: Fluxo de Potência Ótimo.
Lecture 00 – Apresentação.
Lecture 01 – Modelagem e Otimização.
MATLAB models
Lecture 02 – Linguagem de Modelagem Algébrico.
AMPL models 02
Lecture 03 – Gerenciamento da Energia Elétrica em uma Residência.
AMPL models 03
Lecture 04 – Dimensionamento de uma Microrrede.
AMPL models 04
Lecture 05 – Monitoramento Não-Intrusivo de Cargas Residencias.
AMPL models 05
Lecture 06 – Operação dos Sistemas de Distribuição de Energia Elétrica.
AMPL models 06
Lecture 07 – Estimação de Estado nos Sistemas de Distribuição de Energia Elétrica.
AMPL models 07
Lecture 08 – Detecção e Localização de Perdas Não-Técnicas.
AMPL models 08
Lecture 09 – Planejamento da Operação dos Sistemas de Distribuição de Energia Elétrica.
AMPL models 09
Lecture 10 – Alocação de BCs e RTs nos Sistemas de Distribuição de Energia Elétrica.
AMPL models 10
Lecture 11 – Coordenação de Carregamento de Veículos Elétricos nos Sistemas de Distribuição de Energia Elétrica.
AMPL models 11
Lecture 12 – Impondo Restrições de Radialidade nos Problemas de Otimização dos Sistemas de Distribuição de Energia Elétrica.
AMPL models 12
Lecture 13 – Reconfiguração dos Sistemas de Distribuição de Energia Elétrica.
AMPL models 13
Lecture 14 – Restauração dos Sistemas de Distribuição de Energia Elétrica.
AMPL models 14
Lecture 15 – Planejamento dos Sistemas de Distribuição de Energia Elétrica.
AMPL models 15
Lecture 01 – Apresentação.
Lecture 02 – Modelagem e Otimização.
Lecture 03 – Linguagem de Modelagem Algébrico.
Lecture 04 – Revisão da Análise de Sistemas de Energia Elétrica.
Lecture 05 – Despacho e Planejamento de Reativos em Sistemas de Energia Elétrica.
Lecture 06 – Planejamento da Expansão do Sistema de Transmissão.
Lecture 07 – Planejamento da Expansão do Sistema de Transmissão Multi-Estagio Considerando Diferentes Cenários.
Lecture 00 – Apresentação.
Lecture 01 – Breve Revisão de Modelagem e Otimização.
Lecture 02 – Linguagem de Modelagem Algébrico.
AMPL models 02
Lecture 03 – Revisão da Análise de Sistemas de Energia Elétrica.
AMPL models 03
Lecture 04 – Despacho e Planejamento de Reativos em Sistemas de Energia Elétrica.
AMPL models 04
Lecture 05 – Planejamento da Expansão do Sistema de Transmissão.
AMPL models 05
Lecture 06 – Planejamento da Expansão do Sistema de Transmissão Multi-Estagio Considerando Diferentes Cenários.
Lecture 00 – Informações Gerais.
Lecture 01 – Introdução.
Lecture 02 – Formulação Básica do Problema.
Lecture 03 – Métodos de Resolução do Problema de Fluxo de Carga.
Lecture 04 – Resolução do Problema de Fluxo de Carga pelo Método de Newton.
Lecture 05 – Controles e Limites.
Lecture 06 – Fluxo de Carga Linearizado.
Lecture 07 – Fluxo de Carga Para Redes de Distribuição.
Lecture 01 – Apresentação.
Lecture 02 – Modelagem e Otimização.
Lecture 03 – Linguagem de Modelagem Algébrico.
Lecture 04 – Revisão da Análise de Sistemas de Energia Elétrica.
Lecture 05 – Planejamento da Expansão do Sistema de Transmissão.
Lecture 06 – Planejamento da Expansão do Sistema de Transmissão Multi-Estagio Considerando Diferentes Escenarios.
Lecture 01 – Introdução.
Lecture 02 – Modelagem e Otimização.
Lecture 03 – Linguagem de Modelagem Algébrico.
ampl.xml (Notepad++ - user defined language file)
Last updated: July 17, 2015
Módulo I: Visión General del Mundo Científico Global.
Módulo II: La Carrera del Docente Investigador.
Módulo III: Técnicas de Investigación.
Linguagem de Modelagem Algébrico.
Módulo IV: Elaboración de Artículos Científicos para Revistas Indexadas.
Módulo V: Elaboración de Propuestas Científicas y Convocatorias.
Available for international collaborations and consulting in power systems planning, renewable integration, and stochastic optimization for energy transition projects.
You can find me at my office 223-A located on the second floor of the School of Electrical and Computer Engineering at University of Campinas.
I am in my office every day from 8h00 until 18h00, but you may call to arrange an appointment.