TY - JOUR
T1 - An Improved Combined Current Control for Single-Phase Operation Mode of Single-/Three-Phase EV Charging System with Voltage Ripple Suppression
AU - Bi, Yuxuan
AU - Zhao, Tong
AU - Xu, Junzhong
AU - Shu, Guohua
AU - Wu, Chao
AU - Wang, Yong
AU - Soeiro, Thiago Batista
N1 - Publisher Copyright:
© 1986-2012 IEEE.
PY - 2023/11/1
Y1 - 2023/11/1
N2 - In this article, the control stage of an interesting versatile single-/three-phase electric vehicle (EV) charging system is studied in details. Therein, a typical three-phase two-level voltage source rectifier can be reconfigured to operate as a single-phase rectifier where two phase-legs operate with a pulsewidth modulation interleaving method and the grid neutral is connected to the midpoint of the dc-bus capacitors with the third leg operating as an active power decoupling (APD) circuit to reduce the current stress in the capacitors. To improve the performance of the single-phase operation while considering external grid voltage disturbances, first, an improved hybrid current control method combining deadbeat prediction current control (DPCC) with repetitive control (RC) is proposed in this article, where a modified RC is adopted to suppress the influence of the internal dc-bus capacitor voltage disturbance and to improve the harmonic control performance. Thereafter, via introducing the weighting factor Kf of the DPCC and by multiplexing the filter of RC in the DPCC output, the stability of the current loop under the influence of grid voltage distortion and grid impedance can be improved remarkably. Moreover, a grid-frequency voltage ripple suppression function implementing zero-voltage-switching turn-on for the APD circuit is achieved, improving the reliability of the converter. Finally, a 7.4-kW single-phase ac-dc converter prototype is built to verify the feasibility and effectiveness of the proposed method in the single-/three-phase EV charging system.
AB - In this article, the control stage of an interesting versatile single-/three-phase electric vehicle (EV) charging system is studied in details. Therein, a typical three-phase two-level voltage source rectifier can be reconfigured to operate as a single-phase rectifier where two phase-legs operate with a pulsewidth modulation interleaving method and the grid neutral is connected to the midpoint of the dc-bus capacitors with the third leg operating as an active power decoupling (APD) circuit to reduce the current stress in the capacitors. To improve the performance of the single-phase operation while considering external grid voltage disturbances, first, an improved hybrid current control method combining deadbeat prediction current control (DPCC) with repetitive control (RC) is proposed in this article, where a modified RC is adopted to suppress the influence of the internal dc-bus capacitor voltage disturbance and to improve the harmonic control performance. Thereafter, via introducing the weighting factor Kf of the DPCC and by multiplexing the filter of RC in the DPCC output, the stability of the current loop under the influence of grid voltage distortion and grid impedance can be improved remarkably. Moreover, a grid-frequency voltage ripple suppression function implementing zero-voltage-switching turn-on for the APD circuit is achieved, improving the reliability of the converter. Finally, a 7.4-kW single-phase ac-dc converter prototype is built to verify the feasibility and effectiveness of the proposed method in the single-/three-phase EV charging system.
KW - Deadbeat predictive current control (DPCC)
KW - repetitive control (RC)
KW - single-phase ac-dc converter
KW - total harmonic distortion (THD)
KW - voltage ripple suppression (VRS)
KW - 2024 OA procedure
UR - https://www.scopus.com/pages/publications/85163522014
U2 - 10.1109/TPEL.2023.3290798
DO - 10.1109/TPEL.2023.3290798
M3 - Article
AN - SCOPUS:85163522014
SN - 0885-8993
VL - 38
SP - 13635
EP - 13649
JO - IEEE Transactions on Power Electronics
JF - IEEE Transactions on Power Electronics
IS - 11
ER -