INSTITUTO PARA LA DIVERSIFICACIÓN Y EL AHORRO ENERGÉTICO (IDAE). Plan de Energías Renovables
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1 7 Referencias INSTITUTO PARA LA DIVERSIFICACIÓN Y EL AHORRO ENERGÉTICO (IDAE). Plan de Energías Renovables MINISTERIO DE INDUSTRIA, TURISMO Y COMERCIO, Balance Energético de Marzo de ODENBERGER, M, JOHNSSON, F, Pathways for the European electricity supply system to 2050 The role of CCS to meet stringent CO 2 reduction targets. International Journal of Greenhouse Gas Control 4, RED TRANSNACIONAL ATLÁNTICA, Desarrollo de las energías renovables marinas: condiciones de éxito en las regiones de la RTA de Arco Atlántico FERNÁNDEZ, P., Energía de las olas. Publicación del Departamento de Ingeniería Eléctrica y Energética. Universidad de Cantabria. MEDINA, J., Ingeniería Marítima y Costera. Unidad 1. Oscilaciones del mar. Universidad Europea de Madrid. CRUZ, J., Ocean Wave Energy. Current Status and Future Perspectives WORLD ENERGY COUNCIL, 2010 Survey of Energy Resources FERNÁNDEZ, P., Energía de las olas. Publicación del Departamento de Ingeniería Eléctrica y Energética. Universidad de Cantabria. SOLÉ, A., Energías renovables. Ed. Ceysa. AQUARET RODRIGUES, L., Wave Power Conversion System for Electrical Energy Production. Departament of Electrical Engineering. Faculty of Science and Technology. Nova University of Lisbon. Caparica -PORTUGAL Línea de Negocio Energías del Mar 122
2 ELECTRIC POWER RESEARCH INSTITUTE (EPRI), Ocean Tidal and Wave Energy. Renewable Energy Technical Assessment Guide. MEDINA, J., Ingeniería Marítima y Costera. Unidad 1. Oscilaciones del mar. Universidad Europea de Madrid. CENTRE FOR RENEWABLE ENERGY SOURCES, Ocean Energy Conversion in Europe. Recent advancement and prospects. Renewable Energy Technologies VINING, J., Tesis Ocean Wave Energy Conversion. University of Wisconsin (Madison). FALÇAO, A. F., The shoreline OWC wave plant of the Azores. Proceedings of the Fourth European Wave Energy Conference, Aalborg, Denmark. FALÇAO, A. F., Wave Energy Utilization: A Review of the technologies. Renewable and Sustainable Energy Reviews 14 (2010) RHINEFRANK, J., Development and Characterization of a Novel Direct Drive Rotary Wave Energy Point Absorber MTS-IEEE Oceans Conference Proceedings. CRUZ, J., Ocean Wave Energy. Current Status and Future Perspectives GARCÍA A., Energía Undimotriz 9ª BALANCE EUROBSERV ER, Estado de las Energías Renovables en Europa RED TRANSNACIONAL ATLÁNTICA, Desarrollo de las energías marinas: condiciones de éxito en las regiones de la RTA del Arco Atlántico. IEA-OES, 2009, OCEAN ENERGY: GLOBAL TECHNOLOGY DEVELOPMENT STATUS LENDERMANN, H., et al, Direct generation wave energy converters for optimized electrical power production. CRUZ, J., Ocean Wave Energy. Current Status and Future Perspectives Línea de Negocio Energías del Mar 123
3 DANIELSSON, O et al, Permanent magnet fixation concepts for linear generator WOLFBRAND, A., Automated design of a linear generator for the wave energy converter A simplified model IVANOVA, I.A. et al, Simulation of cogging in a 100kW permanent magnet octagonal linear generator for ocean wave conversion IVANOVA, I.A. et al, Simulation of wave energy converter with octagonal linear generator IVANOVA, I.A. et al, Simulated generator for wave energy extraction in deep water SANEZ FEITO, J., Máquinas eléctricas. Pearson Education HAYT, BUCK, Teoría electromagnética REITZ, MILFORD, CHRISTY, Fundamentos de la teoría electromagnética SOUSA, M, et al, Modelling and test resultas of Archimedes Wave Swing CLIFTON, P.C. et al, Design and commissioning of a 30kW direct drive wave generator POLINDER, H. et al, Modelling and test result of the AWS linear PM generator system POLINDER, H. et al, Linear generator for direct drive wave energy conversion POLINDER, H. et al, Linear PM generator system for wave energy conversion in the AWS POLINDER, H. et al, Conventional and TFPM linear generator for direct-drive wave energy conversion Línea de Negocio Energías del Mar 124
4 POLINDER, H. et al, Archimedes wave swing linear permanent magnet generator system performance POLINDER, H. et al, Linear generator system for wave energy conversion MUELLER, M. et al, Electrical aspect of direct drive wave energy converters MUELLER, M. et al, Electric generator for direct drive wave energy converters MUELLER, M., BAKER, N.J., Direct drive electrical power take-off for offshore marine energy converters MUELLER, M et al, A novel lightweight permanent magnet generator for direct drive power take off in marine renewable energy converters MUELLER, M et al, Current and novel electrical generator technology for wave energy converters. THORBURN, K. et al Wave energy transmission system concepts for linear generator arrays THORBURN, K. et al Farm size comparison with analytical model of linear generator wave energy LEIJON, M. et al, Multiphysics simulation of wave energy to electric conversion by permanent magnet linear generator LEIJON, M. et al, Wave energy from the North sea: Experiences from the Lysekil research site ERIKSSON, M. et al, Wave power absortion: Experiments in open sea and simulation SARMENTO, A. et al, Frequency domain analysis of the AWS device Línea de Negocio Energías del Mar 125
5 RAHM, M. et al, Laboratory experimental verification of a marine substation LANGHAMER, O. et al, Wave power Sustainable energy or environmental costly? A review with special emphasis on linear wave energy converters PIRISI, A. et al, Novel modelling design of three phase tubular permanent magnet linear generator for marine applications CANCELLIERE, P. et al A tubular generator for marine energy direct drive applications DELLI COLLI, V. et al, A tubular-generator drive for wave energy conversion BREKKEN, T. et al, Ocean wave energy overview and research at Oregon State University ELWOOD, D. et al, Design, construction, and ocean testing of a taut-moored dual body wave energy converter with a linear generator power take-off ELWOOD, D. et al, Numerical model and ocean testing of a direct drive wave energy device utilizing a permanent magnet linear generator for power take-off TRIDENT ENERGY COMPANY SNAPPER SPOONER, E., GRIMWADE, J Snapper: an efficient and compact direct electric power take-off device for wave energy converters SPOONER, E. et al, A high force density generator using a slipping magnetic coupling BAILEY, H. et al, Hydrodynamic and electromechanical simulation of a snapper based wave energy converter Snapper Project Periodic Report Year 1 Línea de Negocio Energías del Mar 126
6 &QUERY=0124f94cd0e6:0440:750c0df0&RCN=91915 NEPTUNE WAVE POWER SPOONER, E. et al, Hydrodynamic and Electromechanical Simulation of a Snapper Based Wave Energy Converter SPOONER, E. et al, A high force density generator using a slipping magnetic coupling VINING, J. et al, Design and optimization of a novel hybrid transverse/longitudinal flux, wound-field linear machine for ocean wave energy conversion VINING, J. et al, Self-synchronous control of doubly-fed linear generators for ocean wave energy applications VERMAAK, R. et al, Design of a novel permanent magnet linear generator for wave energy conversion VERMAAK, R. et al, Novel permanent magnet linear generator topology for wave energy conversion AGAMLOH, E.B. et al, A novel direct-drive ocean wave energy extraction concept with contact-less force transmission system KEYSAN, O. et al, C-Gen, a lightweight direct drive generator for marina energy converters COLUMBIA POWER TECHNOLOGIES RHINEFRANK, K. et al, Novel ocean energy permanent magnet linear generator buoy RHINEFRANK, K. et al, Development and characterization of a novel direct drive rotary wave energy point absorber. MTS-IEEE Ocean Conference Proceedings. Línea de Negocio Energías del Mar 127
7 RHINEFRANK, K. et al, Development of a novel 1:7 scale wave energy converter JOUANNE, A., BREKKEN, T., Overview of wave energy activities at Oregon State University ENGSTRÖM, J. et al, Offshore experiments on a direct drive wave energy converter SVENSSON, O. et al, Experiments at Islandberg on the west coast of Sweden in preparation of the construction of a pilot wave power plant SZABÓ, L., OPREA, C., Wave energy plants for the black sea. Possible energy converter structure. SZABÓ, L. et al, Study on a wave energy based power system VASAK, M. et al, Hybrid modeling for optimal control of a linear switched reluctance generator used in a direct drive wave energy converter GRILLI. S. et al, Small buoys for energy harvesting: Experimental and numerical modeling Studies MOLINAS, M. et al, Power electronic as grid for actively controlled wave energy converters BARTON, J. et al, Energy Storage and its use with intermittent renewable energy NEUMAN, F. et al, Pico OWC recovery project: Recent activities and performance data. SETOGUCHI, T. et al, A comparison of performances of turbines for wave power conversion SETOGUCHI, T. et al, Study of turbine with self-pitch-controlled blades for wave energy conversion Línea de Negocio Energías del Mar 128
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