Zobrazeno 1 - 10
of 28
pro vyhledávání: '"Rogerio Vani Jacomini"'
Autor:
Fernando Lino, Fabiano F. Costa, Rogerio Vani Jacomini, Alfeu J. Sguarezi Filho, Bruna Neves de Andrade
Publikováno v:
Eletrônica de Potência. 26:94-103
Publikováno v:
IEEE Transactions on Sustainable Energy. 10:952-960
This paper presents a finite control set applied to the direct power control for doubly fed induction generator under normal and voltage sag operation. The controller is designed by using the discretized equations of DFIG. In this case, the generator
Autor:
Jefferson R. P. de Assis, Fernando Lino, Fabiano F. Costa, Darlan A. Fernandes, Alfeu J. Sguarezi Filho, Rogerio Vani Jacomini
Publikováno v:
Energies, Vol 14, Iss 1824, p 1824 (2021)
Energies
Volume 14
Issue 7
Energies
Volume 14
Issue 7
This work introduces a new method for computing the angular position of the voltage of the grid—based on a finite set of angles—in the condition of failures in the distribution systems, as symmetrical and asymmetric voltage sags, unbalance, harmo
Autor:
Mariana Silva Barreto, Mauricio B. C. Salles, J.S. Solís-Chaves, Valdemir Martins Lira, Alfeu J. Sguarezi Filho, Rogerio Vani Jacomini
Publikováno v:
Control Engineering Practice. 65:48-58
In this paper, a novel direct power control algorithm for a Doubly Fed Induction Generator-based wind system, robust to the machine parameters variations, is projected. The proposed scheme employs two loops designed using the discretized equations of
Autor:
André Luiz de Lacerda Ferreira Murari, Carlos Mario Rocha Osorio, Rogerio Vani Jacomini, Juan Sebastian Solis Chaves, J. A. T. Altuna, Alfeu Joaozinho Sgaurezi Filho
Publikováno v:
IEEE Latin America Transactions. 15:173-180
This paper groups basic information about the control of doubly-fed induction generators (DFIG) for wind power generation. The DFIG stator is connected directly to the power grid and its rotor is connected by a double converter called back-to-back. T
Publikováno v:
2019 IEEE 15th Brazilian Power Electronics Conference and 5th IEEE Southern Power Electronics Conference (COBEP/SPEC).
One issue of using doubly fed induction generator operating in parallel with the grid is the vulnerability of the power-electronic converter when voltage sags in the supply terminals of the generator occur. The sudden reductions of voltage at the sup
Autor:
Rogerio Vani Jacomini, Carlos Eduardo Capovilla, A. J. Sguarezi Filho, José Luis Azcue Puma, J. A. T. Altuna
Publikováno v:
Electrical Engineering. 100:123-128
This paper proposes a deadbeat controller applied to direct torque control strategy for a three-phase induction motor. The deadbeat control method uses the discretized dynamic model of the machine to calculate the theoretical stator voltage vector re
Autor:
Edmarcio Antonio Belati, André Luiz de Lacerda Ferreira Murari, J. A. T. Altuna, Rogerio Vani Jacomini, I. R. S. Casella, Carlos Eduardo Capovilla, Samuel C. Pereira, Alfeu J. Sguarezi Filho
Publikováno v:
Power Line Communication Systems for Smart Grids ISBN: 9781785615504
This chapter proposes a control technique for a wind doubly fed induction generator (DFIG), based on direct torque control (DTC) with power references sent remotely via power line communication (PLC) technology. DTC achieves high dynamic performance,
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::092c0e1b253f43becd464e349ec972b8
https://doi.org/10.1049/pbpo132e_ch15
https://doi.org/10.1049/pbpo132e_ch15
Autor:
Alfeu J. Sguarezi Filho, L L F Murari Andre, Carlos Eduardo Capovilla, J. A. T. Altuna, Edmarcio Antonio Belati, Rogerio Vani Jacomini, R.S. Ivan Casella, Samuel C. Pereira
Publikováno v:
2018 13th IEEE International Conference on Industry Applications (INDUSCON).
This paper proposes a Wind Power Generation System (WPGS) that operates in a Smart Grid (SG) environment by means of Power Line Communication (PLC) technology. The WPGS uses a Doubly Fed Induction Generator (DFIG) controlled by Direct Torque Control
Publikováno v:
2018 7th International Conference on Renewable Energy Research and Applications (ICRERA).