TY - GEN
T1 - Infinite virtual capacitor realization for grid-connected power converters
AU - Mellincovsky, M.
AU - Peretz, M. M.
AU - Yuhimenko, V.
AU - Kuperman, A.
N1 - Publisher Copyright: © 2016 IEEE.
PY - 2017/1/4
Y1 - 2017/1/4
N2 - An alternative approach to DC link capacitance reduction and ripple suppression of grid-connected converters was recently suggested. Instead of regulating the DC link current, the proposed system gains control over the ripple by replacing the grid-interfacing converter in the task of regulating the DC link voltage. This allows increasing the voltage control bandwidth (thus reducing the ripple) without sacrificing the input power factor. In this paper, a PI in conjunction with Multi-resonant voltage controller is introduced, allowing complete elimination the DC link voltage ripple thus realizing a virtual infinite capacitance.
AB - An alternative approach to DC link capacitance reduction and ripple suppression of grid-connected converters was recently suggested. Instead of regulating the DC link current, the proposed system gains control over the ripple by replacing the grid-interfacing converter in the task of regulating the DC link voltage. This allows increasing the voltage control bandwidth (thus reducing the ripple) without sacrificing the input power factor. In this paper, a PI in conjunction with Multi-resonant voltage controller is introduced, allowing complete elimination the DC link voltage ripple thus realizing a virtual infinite capacitance.
KW - Power factor correction
KW - capacitance reduction
UR - http://www.scopus.com/inward/record.url?scp=85014182539&partnerID=8YFLogxK
U2 - 10.1109/ICSEE.2016.7806193
DO - 10.1109/ICSEE.2016.7806193
M3 - Conference contribution
T3 - 2016 IEEE International Conference on the Science of Electrical Engineering, ICSEE 2016
BT - 2016 IEEE International Conference on the Science of Electrical Engineering, ICSEE 2016
T2 - 2016 IEEE International Conference on the Science of Electrical Engineering, ICSEE 2016
Y2 - 16 November 2016 through 18 November 2016
ER -