Title :
A grid connection scheme of a Switched Reluctance Generator for active power injection
Author :
Viajante, Ghunter P. ; Andrade, D.A. ; Gomes, L.C. ; Santos, Jose A. ; Bernardeli, V.R. ; Coelho, E.A. ; Silveira, A.W.F.V. ; Freitas, M.A.A.
Author_Institution :
Fed. Inst. of Educ., Sci. & Technol. of Goias, Goias, Brazil
Abstract :
This paper presents a study of the Switched Reluctance Generator dynamics when connected to a single-phase AC power grid. A mathematical model that includes magnetic saturation is used to represent the reluctance generator, which is driven by an asymmetric half bridge converter. Output generated voltage is smoothed with a shunt capacitor leading to a DC link voltage. This voltage is regulated using a PI compensator that governs the magnetizing angle of the generator phases. It is shown that introducing a freewheeling stage between the magnetizing and the demagnetizing states of each phase, allows for a better usage of mechanical power in the electromechanical conversion process. Injection of active power in the grid is performed by a current controlled PWM inverter synchronized by phase locked loop. The complete system is simulated and the results are shown and discussed. The feasibility of the proposed strategy is demonstrated.
Keywords :
PI control; PWM invertors; PWM power convertors; electric current control; phase locked loops; power grids; reluctance generators; voltage control; DC link voltage; active power injection; asymmetric half bridge converter; current controlled PWM inverter; demagnetizing state; electromechanical conversion process; freewheeling stage; generator phase; grid connection scheme; magnetic saturation; magnetizing angle; magnetizing state; mathematical model; mechanical power; output generated voltage; phase locked loop; shunt capacitor; single-phase AC power grid; switched reluctance generator dynamics; voltage regulation; Equations; Inverters; Mathematical model; Phase locked loops; Rotors; Switches; Voltage control; Grid Connection; Switched Reluctance Generator; Voltage Control Generated;
Conference_Titel :
Electric Machines & Drives Conference (IEMDC), 2013 IEEE International
Conference_Location :
Chicago, IL
Print_ISBN :
978-1-4673-4975-8
Electronic_ISBN :
978-1-4673-4973-4
DOI :
10.1109/IEMDC.2013.6556130