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IEEE PES Innovative Smart Grid Technologies Conference Europe(4)
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An efficient hybrid metaheuristics optimization technique applied to the AC electric transmission network expansion planning
ArticleAbstract: The transmission network expansion planning (TNEP) problem consists of determining the necessary infPalabras claves:AC Model, Electric energy systems, Hybrid-metaheuristics, Optimization, parallel processing, Transmission network expansion planningAutores:Castro C.A., Edgar G. Morquecho, Santiago Torres ContrerasFuentes:scopusAC Multi-Stage Transmission Network Expansion Planning considering a Multi-Voltage Approach
Conference ObjectAbstract: Long-term transmission network expansion planning aims to determine where, when and which types of ePalabras claves:AC Load Flow, Multi-Voltage Approach, Power Losses, reactive power compensation, Transmission network expansion planningAutores:Chamorro H.R., Chillogalli J.E., Patricio Cajas, Romero R.R., Santiago Torres Contreras, Sood V.K.Fuentes:googlescopusAC Transmission Expansion Planning Considering Uncertainty
Conference ObjectAbstract: Taking into account uncertainty into the Transmission Expansion Planning (TEP) problem is an importaPalabras claves:AC Model, MONTECARLO, Simheuristic, Transmission expansion planning, UNCERTAINTYAutores:Castro C.A., Luis R. Villacres, Richard M. Sanchez, Santiago Torres ContrerasFuentes:googlescopusAC dynamic transmission expansion planning using a hybrid optimization algorithm
Conference ObjectAbstract: Dynamic Transmission Expansion Planning (DTEP) seeks to answer where, how many, and when new infrastPalabras claves:AC Model, Differential Evolution, Dynamic planning, Dynamic transmission expansion planning, meta-heuristicsAutores:Edgar G. Morquecho, Fabian Astudillo-Salinas, Flores W.C., Julio Ceśar López, Nelson E. Matute, Santiago Torres ContrerasFuentes:googlescopusAC transmission network expansion planning considering losses
Conference ObjectAbstract: This paper proposes to solve the transmission network expansion planning problem (TNEP) using the ACPalabras claves:Autores:Edgar G. Morquecho, Juan Leonardo Espinoza, Julio Ceśar López, Klever L. Quizhpe, Lizandro Solano-Quinde, Rodrigo E. Sempértegui, Santiago Torres ContrerasFuentes:scopusElectric distribution network operation planning using chu and beasley genetic algorithm and particle swarm optimization
Book PartAbstract: The operation planning problem consists of finding the best network control variable settings to impPalabras claves:Autores:Castro C.A., De Almeida M.C., de Araujo R.A., Santiago Torres ContrerasFuentes:googlescopusElectric vehicles and power quality in low voltage networks: Real data analysis and modeling
ArticleAbstract: Electric vehicles (EVs) will help to decarbonize energy systems. However, their connection to on-boaPalabras claves:electric vehicle, EV electric model, EV harmonic spectrum, Power QualityAutores:Durán I., Marulanda A., Pavas A., Quirós-Tortós J., Santiago Torres ContrerasFuentes:scopusExpansion planning for smart transmission grids using ac model and shunt compensation
ArticleAbstract: It is widely recognised that large amounts of limited controlled renewable generation in smart gridsPalabras claves:Autores:Castro C.A., Santiago Torres ContrerasFuentes:googlescopusOptimal Planning of Electric Vehicles Energy Exchange in Parking Lots Considering Uncertainties
Conference ObjectAbstract: With the growing concern for energy conservation and environmental protection around the world, thePalabras claves:Electric vehicles, Monte carlo simulation, optimization energy Exchange, time-of-use tariffsAutores:Chamorro H.R., Chillogalli J.E., David A. Sanchez, Luiz G. González, Romero R.R., Santiago Torres Contreras, Sood V.K.Fuentes:scopusParallel particle swarm optimization applied to the static Transmission Expansion Planning problem
Conference ObjectAbstract: It is well known that the Transmission Expansion Planning (TEP) is a formidable combinatorial problePalabras claves:DC Model, Electric power systems, Metaheurístic, Optimization, parallel processing, particle swarm, Transmission expansion planningAutores:Castro C.A., Santiago Torres ContrerasFuentes:googlescopus