Salcedo Hernández, José Carlos, Manuel Fortea Luna, Antonio Lauria, Luisa Rovero, Ugo Tonietti, Carlos Chastre, Luis González Jiménez, Miguel Matas Casco, and Juan Saumell Lladó Cáceres-Florencia, patrimonio vivo: Ensayos técnico-arquitectónicos. Eds. José-Carlos Salcedo. Vol. 3. Suplementos de Investigación en Construcciones Arquitectónicas , 3. Cáceres: Grupo de Investigación de Construcciones Arquitectónicas de la Universidad de Extremadura, 2017.
Abstractn/a
Romba, {L. F. }, {S. S. } Valtchev, R. Melicio, {M. V. } Mudrov, and {A. M. } Ziuzev. "
Electric vehicle battery charger controlled by magnetic core reactor to Wireless Power Transfer system."
Conference Proceedings - 2017 17th IEEE International Conference on Environment and Electrical Engineering and 2017 1st IEEE Industrial and Commercial Power Systems Europe, EEEIC / I and CPS Europe 2017. United States: Institute of Electrical and Electronics Engineers Inc., 2017.
AbstractThis paper presents a control process and frequency adjustment based on the Magnetic Core Reactor prototype. For the past decades, there has been significant development in the technologies used in Wireless Power Transfer systems. In the Wireless Power Transfer systems it is essential that the operating frequency of the primary circuit be equal to the resonant frequency of the secondary circuit so there is the maximum energy transfer. The Magnetic Core Reactor allows controlling of the frequencies on both sides of the transmission and reception circuits. In addition, the assembly diagrams and test results are presented.
Romba, Luis, {Stanimir S. } Valtchev, and Rui Melício. "
Single-phase wireless power transfer system controlled by magnetic core reactors at transmitter and receiver."
Technological Innovation for Smart Systems - 8th IFIP WG 5.5/SOCOLNET Advanced Doctoral Conference on Computing, Electrical and Industrial Systems, DoCEIS 2017, Proceedings. IFIP Advances in Information and Communication Technology. Springer New York LLC, 2017. 419-428.
AbstractThe applications of wireless power transmission have become widely increasing over the last decade, mainly in the battery charging systems for electric vehicles. This paper focuses on the single-phase wireless power transfer prototype controlled by magnetic core reactors in either side of the system: that of the transmitter, and that of the receiver. The described wireless power transfer system prototype employs a strong magnetic coupling technology to improve the power transmission efficiency. In the same time, a magnetic core reactor is used to control the “tuning” between the transmitter and the receiver frequencies, allowing for that increase of the system efficiency. Finally, practical results of the implemented prototype are presented.